ISCRE 20 |
The 20th International Symposium on Chemical Reaction Engineering
Green Chemical Reaction Engineering for a Sustainable Future
![]() Sun 7–Wed 10 September 2008
Kyoto International Conference Center, Kyoto, JAPAN
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301937-1 | AD-OX: A sequential oxidative process for water treatment-adsorption and batch CWAO regeneration of activated carbon | *Henri Delmas, Carmen Creanga, Carine Julcour Lebigue, Anne-Marie Wilhelm INPT, Université de Toulouse, Laboratoire de Genie Chimique |
302125-1 | Experimental study for carbon dioxide recovering hydrogen production for vehicle use | *Yukitaka Kato, Kenichiro Otsuka, Junichi Ryu Tokyo Institute of Technology |
301960-1 | Experimental and theoretical investigation on the transient and steady state behaviour of a catalytic partial oxidation reformer | *Alessandra Beretta, Matteo Lualdi, Ivan Tavazzi, Gianpiero Groppi, Alessandro Donazzi, Pio Forzatti Politecnico di Milano, Dipartimento di Energia |
301867-1 | Recovery of useful lighter fuels from petroleum residual oil by oxidative cracking with steam using iron oxide catalyst | *Satoshi Funai, Eri Fumoto, Teruoki Tago, Takao Masuda Hokkaido University, Division of Chemical Process Engineering |
304773-1 | A simple and environmentally friendly method to prepare sulfide photocatalysts | *Tai-Chou Lee1, Ching-Chen Wu1, Hui-Fang Cho1, Wen-Sheng Chang2 1National Chung Cheng University, Department of Chemical Engeering; 2Industrial Technology Research Institute, Energy and Environmental Laboratories |
301955-1 | Towards a CO2-free ethylene epoxidation process: A novel, pressure-tuned liquid phase catalytic process | *Bala Subramaniam1, Madhav Ghanta1, Hyun Jin Lee3, Daryle Hadley Busch2 1University of Kansas, Department of Chemical and Petroleum Engineering; 2University of Kansas, Department of Chemistry; 3Center for Environmentally Beneficial Catalysis |
301949-2 | Effects of an upstream-located diesel oxidation catalyst on the performance of NOx storage and reduction catalyst | Jan Stepanek1, Frantisek Plat1, Petr Koci1, *Milos Marek1, Milan Kubicek2 1Institute of Chemical Technology, Prague, Department of Chemical Engineering; 2 Institute of Chemical Technology, Prague, Department of Mathematics |
301946-1 | Effect of the acid/metal balance of Pt/mordenite catalysts on the hydroconversion of 2-methylnaphthalene | Horacio González1, Omar Surisadai Castillo1, *Mario Guillermo Villasenor1, Jose Luis Rico1, Salomon Ramiro Vasquez1, Jorge Ramirez2 1Universidad Michoacana de San Nicolás de Hidalgo, Facultad de Ingenieria Quimica; 2UNAM, Facultad de Quimica, UNICAT |
301892-1 | The feasibility study on appling a catalytic reformer for after-treatment system of diesel vehicle | *Sung-ho Cho1, Jong-soo Park1, Kyung-ran Hwang1, Chun-boo Lee2, Shin-kun Ryi2, Hong-suk Kim3, Young-il Jeong3 1Korea Institute of Energy Research, Renewable Energy Department; 2Korea University, Department of Chemical and Biological Engineering; 3Korea Institute of Machinery & Materials, Engine R&D |
301663-1 | Modeling of reaction kinetics for biodiesel production from Castor oil | *Nivea de Lima da Silva, Danilo Ribeiro de Lima, Elmer Ccopa Rivera, Cesar Benedito Batistella, Maria Regina Wolf-Maciel, Rubens Maciel Filho State University of Campinas, School of Chemical Engineering |
301644-1 | Catalytic partial oxidation of higher hydrocarbons over rhodium catalysts: An experimental and numerical study | *Marco Hartmann, Lubow Maier, Hoang Duc Minh, Olaf Deutschmann University of Karlsruhe, Institute for Chemical Technology and Polymer Chemistry |
301443-1 | Optimization of dyes degradation using magnetically separable photocatalyst (TiO2/SiO2/Fe3O4) | *Tarek A Gad Allah, Shigeru Kato, Shigeo Satokawa, Toshinori Kojima Seikei Univeristy, Department of Materials and Life Science |
300496-2 | Influence of the substrate properties on the performance of NH3-SCR monolithic catalysts for the aftertreatment of diesel exhausts | *Enrico Tronconi1, Isabella Nova1, Enrico Tronconi1, Thorsten Boger2, Tom Collins3, Achim K. Heibel3 1Politecnico di Milano, Dipartimento di Energia; 2Corning GmbH; 3Corning Inc., Diesel Technology Development, USA |
297271-2 | Photocatalytic reactor efficiency evaluation for the complete span of reaction times | Benito Serrano1, Aaron Ortiz2, *Hugo Ignacio de Lasa2 1Universidad de Zacatecas, Mexico; 2University of Western Ontario, Canada |
304870-1 | Desulfurization under simulated oxyfiring fluidized bed combustion conditions: the influence of limestone attrition and fragmentation | *Fabrizio Scala1, Piero Salatino2 1CNR, Istituto di Ricerche sulla Combustione; 2Universita degli Studi di Napoli Federico II, Dipartimento di Ingegneria Chimica |
298184-1 | Biphasic amine solvents for CO2 absorption with low regeneration temperature | Yudy Halim Tan, Pavadee Pachariyanon, *David Agar Technische Universitaet Dortmund, Faculty of Biochemical and Chemical Engineering, Institute of Reaction Engineering |
296064-1 | Mechanism and kinetics of methane steam reforming over ceria–zirconia supported rhodium catalyst at temperatures below 700 °C | *Mohamed Halabi1, Mart de Croon1, John van der Schaaf1, Paul Cobden2, Jaap Schouten1 1Eindhoven University of Technology; 2Energy Research Center of the Netherlands - ECN |
304897-1 | Ceramic foams as structured catalyst inserts in gas-particle filters for simultaneous NOx-removal via selective catalytic reduction | *Sebastian Zurcher, Georg Schaub Universitat Karlsruhe (TH), Engler-Bunte-Institut |
304285-1 | Low temperature gasification using lattice oxygen | *Hiroyuki Hatano Advanced Industrial Science and Technology |
304025-1 | Dye decomposition kinetics by UV/H2O2 | *Jia-Ming Chern, Meng-Wen Chang, Chia-Chun Chung Tatung University, Department of Chemical Engineering |
303954-1 | Bimetallic Co-Ni/Al2O3 catalyst for propane dry reforming | Adesoji Adediran Adesina1, *Faisal M Althenayan2 1University of New South Wales, School of Chemical Sciences & Engineering; 2University of New South Wales, School of Chemical Sciences & Engineering |
302283-1 | Preparation of hydroxyapatite film and application to removal and regeneration of aqueous cations | *Shigeru Sugiyama1, Yuka Shimizu2, Tomoyuki Manabe2, Keizo Nakagawa1, Ken-Ichiro Sotowa1 1The University of Tokushima, Department of Advanced Materials; 2The University of Tokushima, Department of Chemical Science and Technology |
301920-1 | Effect of calcination temperature and CuO loading on activity of CuxCe1-xO2-y catalysts for WGS reaction | Petar Djinovic, Jurka Batista, Janez Levec, *Albin Pintar National Institute of Chemistry |
301675-2 | NO reduction with H2 on pervoskite catalysts | *Stefania Furfori, Davide Mescia, Nunzio Russso, Debora Fino, Guido Saracco, Vito Specchia Politecnico di Torino |
301521-1 | An experimental and theoretical investigation of packed bed chemical-looping combustion | *Sander Noorman, Martin van Sint Annaland, Hans Kuipers University of Twente, Department of Science and Technology, Fundamentals and Chemical Reaction Engineering |
301514-1 | Decomposition of phenol in water by ozone oxidation with metal-supported carbongel | *Noriaki Sano1, Noriaki Sano1, Takuji Yamamoto2, Hiroki Shinomiya1, Akira Endo2, Apiluck Eiad-ua2, Apinan Soottitantawat3 1University of Hyogo; 2National Institute of Advanced Industrial Science and Technology; 3Chulalongkorn University; 4National Nano Technology Center |
301443-4 | Decomposition of harmful organic compounds with ultrasonic waves | Toshinori Kojima, Yasuhiko Takuma, *Takashi Nakae, Shigeru Kato, Shigeo Satokawa Seikei University, Department of Materials and Life Science |
301443-3 | Variation of the generated silica particle properties dependent on the reactor structure and carrier gas type | *Olfa Daboussi, Toru Kobayashi, Yoshiaki Fukuhara, Kengo Tachi, Shigeru Kato, Shigeo Satokawa, Toshinori Kojima Seikei University, Department of Materials and Life Science |
304047-1 | Behavior features of soot combustion in diesel particulate filter | Karen Martirosyan, K. Chen, *Dan Luss University of Houston |
301520-1 | Demonstration of the loop reactor concept | *Aharon Yuso Madai, Moshe Sheintuch Technion-Israel Institute of Technology (IIT), Department of Chemical Engineering |
306729-1 | Shell wastes recycling process using high-pressure carbone dioxide solution and methane fermentation | *Atsushi Iizuka1, Yusuke Kuji1, Yoji Kitajima2, Kazukiyo Kumagai1, Akihiro Yamasaki3, Yuiko Yanagisawa1 1The University of Tokyo, Department of Environment Systems; 2Kajima Corporation, Kajima Technical Research Institute, Environmental Engineering and Bioengineering Group; 3National Institute of Advanced Industrial Science and Technology, Institute for Environmental Management Technology |
306496-1 | Characteristics and reactivity of waste cement particles for the desulphurization process | *Akihiro Yamasaki1, Jiawei Wu2, Atsushi Iizuka2, Kazukiyo Kumagai2, Yukio Yanagisawa2 1National Institute of Advanced Industrial Science and Technology; 2The University of Tokyo |
304769-1 | An in-situ drift spectroscopic study of the photocatalyst Ag3VO4 by the irradiation of visible-light | *Guan Ting Pan1, Thomas C.K. Yang1, Chao-Ming Huang2 1National Taipei University of Technology, Department of Chemical Engineering; 2Kun Shan University of Technology, Department of Environmental Engineering |
304344-1 | Effect of Sb on the growth and photoelectrochemical response of AgIn5S8 film electrodes created by solution growth technique | *Kong-Wei Cheng1, C. M. Huang3, G. T. Pan4, W. S. Chang5, T. C. Lee6, T. C. K. Yang4 1Chang Gung University, Department of Chemical and Materials Engineering; 2Chang Gung University, Green Technology Research Center, Solar Cell Group; 3Kun Shan University, Department of Environmental Engineering; 4National Taipei University of Technology, Department of Chemical Engineering; 5Industrial Technology Research Institute, Energy and Environmental Laboratory; 6National Chung Cheng University, Department of Chemical Engineering |
301899-1 | Phenomenological modeling of coal fired boilers based on CFD simulations | *Devkumar Fulchand Gupta, Vivek Vinayak Ranade National Chemical Laboratory, CReST |
301443-2 | The influence of soil and organic matters on decomposition of trichloroethylene with Fenton's reaction | Toshinori Kojima, Kayoko Fukuda, *Hiroki Saito, Yasuhiko Takuma, Shigeru Kato, Shigeo Satokawa Seikei University, Department of Materials and Life Science |
301370-2 | CFD simulation of the hydrodynamics and reactions in an activated sludge channel reactor of wastewater treatment | Yann Le Moullec, *Caroline Gentric, Olivier Potier, Jean Pierre Leclerc CNRS, Nancy-Université, Laboratoire des Sciences du Genie Chimique (LSGC) |
301361-1 | Cryogenic CO2 capture using dynamically operated fixed beds | *Martin J. Tuinier1, Martin van Sint Annaland1, Gert Jan Kramer2, Hans A.M. Kuipers1 1University of Twente, Faculty of Science and Technology; 2Shell Global Solutions International B.V. |
306030-1 | The effect of chlorine on vaporization and partition of heavy metals during waste incineration | Yoshihiko Ninomiya, *Yi Cheng, Atsushi Sato Chubu University, Department of Applied Chemistry |
304808-1 | Influence of pH and cassava starch concentration on cyanide oxidation by ozone in a steady-state flow bubble column | *Montira Nopharatana1, W. Khongkittikhoon1, W. Songkasiri2 1King Mongkut's University of Technology Thonburi; 2National Center for Genetic Engineering and Biotechnology |
304494-1 | Activity improvement of selective CO oxidation in excess H2 by Pt/χ-Al2O3 catalysts | *Piyasan Praserthdam1, Chatchai Meephoka1, Choowong Chaisuk2, Panida Samparnpiboon3 1Chulalongkorn University, Department of Chemical Engineering; 2Silpakorn University, Department of Chemical Engineering; 3Rangsit University, Department of Chemical Engineering |
301289-1 | Pyrolysis kinetic models of infectious hospital waste: Syringe and cotton | *Samorn Hirunpraditkoon1, Woranuch Jangsawang2 1King Mongkut's Institute of Technology North Bangkok, Department of Chemical Engineering; 2Department of Mechanical Technology, Phranakhon Rajabhat University |
297271-1 | Redox kinetics of Co modified Ni/Al2O3 oxygen carrier for chemical looping combustion | *Hugo Ignacio de Lasa, M. M. Hossain, Kelly Sedor University of Western Ontario |
297263-1 | Hydrogen generation from boron compounds using metal/water reactions: Experiments and model | Moiz Diwan, Unique Luna, Evgeny Shafirovich, *Arvind Varma Purdue University, School of Chemical Engineering |
304869-2 | Synthesis and fine structure characterization of titania nanotubes | Kuen-Song Lin, *Pei-Shan Chen, Yi-Chen Shen, Wen-Ru Chen Yuan Ze University, Department of Chemical Engineering & Materials Science |
304506-1 | Hydrothermal preparation of anatase TiO2 nanoparticles for dye-sensitized solar cells | *Hui-Hsiu Chen1, Y.-F. Hsieh1, C.-K. Lin1, C.-K. Yang2, W.-R. Li3, C. Su1 1National Taipei University of Technology, Institute of Organic and Polymeric Materials; 2National Taipei University of Technology, Department of Chemical Engineering; 3National Central University, Department of Chemistry |
297084-1 | Demonstration of a control system for combustion of VOC lean emissions in a reverse flow reactor | *Fernando V. Diez, Salvador Ordonez, Pablo Marin University of Oviedo, Department of Chemical and Environmental Engineering |
305277-1 | Reaction of palm olein as eco-friendly corrosion inhibitor on aluminium in hydrochloric acid solution | Junaidah Jai1, *Wan Shabuddin Wan Ali1 1Universiti Teknologi MARA, Faculty of Chemical Engineering; 2Universiti Teknologi MARA, Faculty of Chemical Engineering |
304788-1 | Catalytic incineration of volatile organic compounds using Pt-Rh/Al2O3 | *Penmetsa V.K.K. Varma, Anil K. Saroha, Barun K. Guha IIT Delhi, Department of Chemical Engineering |
301400-1 | Modeling of wall-coated reactor for steam reforming of ethanol | Liliana Hernandez, *Viatcheslav Kafarov Universidad Industrial de Santander, Department of Chemical Engineering |
304634-1 | Syngas conversion to chemicals and power | *Ana Narvaez, David Chadwick, Lester Kershenbaum Imperial College London, Department of Chemical Engineering |
301610-1 | Hydrogenolysis of sorbitol to glycols over carbon nanofibers supported ruthenium catalysts | *Jing-Hong Zhou, Long Zhao, Zhi-Jun Sui, Xing-Gui Zhou East China University of Science and Technology, State Key Laboratory of Chemical Engineering |
304649-1 | Photodecomposition of ethylene with hydrogen peroxide | Katsuyasu Sugawara1, Takuo Sugawara1, Hideaki Suzuki1, *Megumi Otsuka2, Hitoshi Funayama2 1Akita University; 2Akita National College of Technology |
301605-1 | Turning tomato processing waste into a valuable source of lycopene through enzymes | Roberto Lavecchia, *Antonio Zuorro Sapienza University, Department of Chemical Engineering |
301058-1 | Green starch conversions: Studies on starch acetylation in supercritical CO2 | *Henky Muljana, Fransesco Picchioni, Hero Heeres, Leon Janssen University of Groningen, Department of Chemical Engineering |
301441-1 | A system engineering methodology for chemical product design | *Zhi Guo Yan, Ai Guo Xuan, Yuan Xin Wu Wuhan Institute of Technology, Key Laboratory for Green Chemical Process of Ministry of Education |
304761-1 | Reaction kinetics of hydrothermal depolymerization of poly(ethylene terephthalate), poly(ethylene naphthalate), and polycarbonate with aqueous ammonia solution | Toshitaka Funazukuri, *Risa Arai, Kentaro Zenda, Kohei Hatakeyama, Kazuko Yui Chuo University |
297915-1 | Reaction kinetics of carbon dioxide with 2-hydroxy ethylammonium acetate ionic liquid | *Sang Wook Park, Byung Jin Hwang, Dae Won Park Pusan National University |
297363-1 | Prolonging catalyst lifetime in supercritical isomerisation of 1-hexene on Pt/Al2O3 | *Jiawei Wang1, P. Chigada2, S. P. Rigby2, B. Al-Duri1, J. Wood1 1University of Birmingham, Centre for Formulation Engineering, School of Engineering; 2University of Bath, Department of Chemical Engineering |
304855-1 | Performance enhancement of SMBR packed with catalyst and adsorbent mixtures | *Viviana Manuela Silva, Alirio Egidio Rodrigues Porto University, Department of Chemical Engineering, LSRE |
300465-1 | Petrochemicals from ethanol over a W-Si based nanocomposite bidisperse solid acid catalyst | Timur Dogu1, *Dilek Varisli1, Gulsen Dogu2 1Middle East Technical University, Department of Chemical Engineering; 2Gazi University, Department of Chemical Engineering |
301726-1 | Effect of ultrasonication on excess sludge bioavailability for methane production | *Kazuaki Yamagiwa, Jun-ichi Sotodate, Kanae Inaba, Hideo Tajima Niigata University |
297798-1 | Insight in the radical mechanism of the catalytic partial oxidation of methane by molecular beam mass spectrometry | *Katrin Pelzer, Michael Geske, Raimund Horn, Friederike C. Jentoft, Robert Schlogl Fritz-Haber-Institute of the Max-Planck-Society |
297607-1 | Hydrogen production by a cyclic water gas shift reactor | *Peter Heidebrecht1, Liisa Rihko-Struckmann1, Kai Sundmacher1 1Max-Planck-Institute, Physical and Chemical Process Engineering; 2University Magdeburg, Process Systems Engineering |
304876-1 | The pulsed compression reactor for the production of synthesis gas | *Timo Roestenberg1, Maxim Glushenkov2, Alexander Kronberg2, Theo van der Meer1 1Twente University, Faculty of Engineering Technology, Laboratory of Thermal Engineering; 2EnConTech BV |
301958-1 | Novel biodiesel production technology using a continuous contactor separator | *Erik Heeres, Boelo Schuur, Floris van Zwol, Henk van de Bovenkamp, Gerard Kraai University of Groningen, Department of Chemical Engineering |
304873-1 | Syntheis of zeolite-A using silica from rice husk ash | *Takaaki Wajima1, Osamu Kiguchi2, Katsuyasu Sugawara1, Takuo Sugawara1 1Akita Univeristy, Faculty of Engineering and Resource Science; 2Akita Prefactural University, Department of Biological Environment |
304563-1 | Gasification of glucose with ruthenium catalyst by a flow-type reactor in supercritical water | *Takafumi Sato1, Yasuyoshi Ishiyama1, Takeshi Furusawa1, Noboru Suzuki2, Naotsugu Itoh1 1Utsunomiya University, Department of Applied Chemistry; 2Utsunomiya University, Department of Information and Control Systems Science |
301434-1 | Analysis of pyrolysis behaviors of agricultural residues by TG-MS technique | *Nakorn Worasuwannarak, Taro Sonobe King Mongkut's University of Technology Thonburi, The Joint Graduate School of Energy and Environment |
294533-1 | Reduction mechanism of iron ore in iron ore/carbon composite | *Ryuichi Ashida, Atsushi Matsumoto, Kouichi Miura Kyoto University, Department of Chemical Engineering |
301726-2 | Effect of microwave pretreatment of excess sludge on solid-state fermentation of biopesticide-producing bacteria | *Kazuaki Yamagiwa, Takuro Sakatsume, Nobuhiro Nagumo, Hideo Tajima Niigata University |
305532-1 | Non-catalytic methane oxidation using argon microwave-plasma reactions | *Daisuke Fukuoka, Hiroshi Nagazoe, Motoki Kobayashi, Kaoru Onoe Chiba Institute of Technology, Graduate School of Life and Environmental Sciences |
300496-4 | Mechanistic transient kinetic analysis of the NH3-NO/NO2 “fast” SCR reaction over a Fe-ZSM5 catalyst for automotive applications | Enrico Tronconi1, Antonio Grossale1, *Isabella Nova1, Enrico Tronconi1, Daniel Chatterjee2, Michel Weibel2 1Politecnico di Milano, Dipartimento di Energia; 2Daimler AG, Abteilung GR/VPE |
301952-1 | Molecular reconstruction of heavy petroleum residue fractions | *Jan J. Verstraete, Philippe Schnongs, Damien Hudebine IFP-Lyon |
301721-1 | Thermal runaway analysis of a three-phase reactor for lco hydrotreatment | *Jean-Marc Schweitzer, Clementina Lopez-Garcia, Daniel Ferre Institut Francais du Petrole (IFP Lyon), Department of Chemical Engineering |
301693-1 | Analysis of different reactor flow patterns and reaction mechanisms for alkylation of isobutane and n-butene on zeolites | *Subramanya V. Nayak1, R. C. Ramaswamy2, M. Al-Dahhan1, P. A. Ramachandran1, M. P. Dudukovic1 1Washington University in St Louis, Department of Energy, Environment and Chemical Engineering; 2Eastman Chemical Company |
301370-1 | Comparison of systemic, compartmental and CFD modelling approaches: Application to the simulation of biological reactor of wastewater treatment | *Yann Le Moullec, Caroline Gentric, Olivier Potier, Jean Pierre Leclerc CNRS, Nancy-Université, Laboratoire des Sciences du Genie Chimique (LSGC) |
304470-1 | Evaluation of novel absorbent for CO2 capture | *Kazuya Goto, Hiromichi Okabe, Shinkichi Shimizu, Masami Onoda, Yuichi Fujioka RITE |
301775-1 | CFD-DEM simulation of gas-solid reacting flows in fluid catalytic cracking (FCC) process | Yi Cheng, *Changning Wu, Yulong Ding, Yong Jin Tsinghua University, Department of Chemical Engineering |
300477-1 | Kinetic modeling of the atom transfer radical polymerization of methyl methacrylate: Conditions for control | *Dagmar R. D'hooge, Marie-Francoise Reyniers, Guy B. Marin Ghent University, Department of Chemical Engineering |
300245-1 | CFD simulation for gas-liquid dispersion: Effect of impeller shape and operating condition | DongHyun Lee1, *Jong Hun Lim1, Myung Il Kim1, Yoong Lee1, In Kyu Song2, Won Sub Song3 1Sungkyunkwan University, Department of Chemical Engineering; 2Seoul National Univ.; 3Samsung Fine Chemical Co. |
297368-2 | Non-parametric analysis of active sites distribution of Mo/Al2O3 catalyst during carbazole HDN | Shigetaka Kai, *Hiroyuki Tominaga, Masatoshi Nagai Tokyo University of Agriculture and Technology |
296670-1 | First principles based simulations of steam cracking of light hydrocarbons | Kevin M. Van Geem, *Maarten K. Sabbe, Marie Francoise Reyniers, Guy B. Marin Ghent University |
301833-1 | Membrane-based reactive separation systems for application in life support and in situ resource utilization systems | *Hyun T. Hwang1, Aadesh Harale1, Muhammad Sahimi1, Paul K. Liu2, Theodore T. Tsotsis1 1University of Southern California, Mork Family Department of Chemical Engineering and Materials Science; 2Media and Process Technology, Inc. |
304946-1 | An innovative modularity of heat circulation for fractional distillation | *Yasuki Kansha1, Naoki Tsuru2, Chihiro Fushimi1, Kaoru Shimogawara3, Atsushi Tsutsumi1 1The University of Tokyo, Institute of Industrial Science; 2The University of Tokyo, Department of Chemical System Engineering; 3Chiyoda Advanced Solutions Corporation |
304844-1 | Computational fluid dynamic model for gaslift reactors in the case of gas depletion | *Pekka Alfred Oinas1, Jarmo Korpijarvi2, Teuvo Kilpio1, Anne Maki1, Jarmo Reunanen1, Heikki Haario3 1Oulu Research Center, Kemira Oyj; 2Numerola Oy; 3Lappeenranta University of Technology |
304826-1 | Kinetics and reactor modelling for reversible autocatalytic reactions in the absence and presence of complexing agents | *Tapio Salmi1, Olatunde Jogunola1, Johan Warna1, Jyri-Pekka Mikkola1, Esko Tirronen2 1Abo Akademi, Process chemistry centre; 2Kemira research centre |
304027-1 | Analysis of a multi-tubular membrane reactor | *Kenichi Mimura, Daisuke Oka, Takafumi Sato, Naotsugu Itoh Utsunomiya University, Department of Applied Chemistry |
301866-1 | Modeling of automotive catalytic converter | *Hyuk Jae Kwon1, Joon Hyun Baik1, In-Sik Nam1, Se H. Oh2 1Pohang University of Science and Technology (POSTECH), Department of Chemical Engineering/School of Environmental Science and Engineering; 2General Motors, R&D and Planning Center |
301771-2 | Model predictive control of a reactive distillation for the production of butyl acetate | Amornchai Arpornwichanop, *Teerasit Komkrajang, Suttichai Assabumrungrat Chulalongkorn University, Department of Chemical Engineering |
301022-3 | Experiment and numerical simulation of Marangoni convection of pendent single drops | Ping Lu, *Guangji Zhang, Chao Yang, Zai-Sha Mao Chinese Academy of Sciences, Institute of Process Engineering |
300874-1 | Modeling residue hydrotreating | *Cristina Ferreira1, Joao Marques1, Melaz Tayakout1, Denis Guillaume1, Isabelle Guibard1, Francisco Lemos2, Herve Toulhoat1 1Institut Francais du Petrole; 2Instituto Superior Tecnico |
300720-1 | Generalised coalescence/redispersion model for micromixing in chemical reactors | *Bela G. Lakatos University of Pannonia, Department of Process Engineering |
299488-1 | Numerical simulations of a diffusion-controlled reaction performed in continuous flow microreactors | *Christophe A. Serra, Guy Schlatter, Nicolas Sary, Georges Hadziioannou CNRS / Universite Louis Pasteur |
297535-1 | Modeling residue hydroprocessing in a multi-fixed-bed reactor system | *Anton Alvarez1, Jorge Ancheyta1 1Instituto Mexicano del Petroleo; 2Escuela Superior de Ingenieria Quimica e Industrias Extractivas (ESIQIE-IPN) |
304846-1 | Transport limited stationary and moving patterns in catalytic solid-fluid systems | *G. Santhosh Reddy1, Vemuri Balakotaiah1, David H. West2 1University of Houston, Department of Chemical and Biomolecular Engineering; 2The Dow Chemical Company |
304519-1 | Optimal operating policies for production of polyethylene resins with tailored molecular weight distribution | Karen Valverde Pontes1, *Rubens Maciel1, Marcelo Embirucu2, Arndt Hartwich3, Wolfgang Marquardt3 1Campinas State University; 2Bahia Federal University; 3RWTH Aachen University |
303374-1 | A computer aided tool for design and operation of biological production of acrylic acid from sugar cane | Betania Hoss Lunelli1, Eduardo Coselli Vasco de Toledo2, *Rubens Maciel Filho1 1State University of Campinas; 2Petrobras SA, Paulinia Refinery |
301754-1 | Flow distribution in a trickle bed reactor — Eulerian CFD modeling and experimental investigation | *Zeljko V. Kuzeljevic, Muthanna H Al-Dahhan, Milorad P Dudukovic Washington University in Saint Louis, Department of Energy, Environmental and Chemical Engineering |
297655-1 | A high-fidelity CFD model of methane steam reforming in a packed bed reactor | *Mayu Kuroki, Shinichi Ookawara, Kohei Ogawa Tokyo Institute of Technology, Department of Chemical Engineering |
297199-1 | Prediction of the behaviour of a petroleum reservoir in geological timescales using detailed reaction mechanisms and informed lumping | Roda Bounaceur1, Paul-Marie Marquaire1, Gerard Scacchi1, *Gabriel Wild1, Florent Domine2 1Nancy-University, Departement de Chimie Physique des Reactions; 2Carbochem, Meylan |
297067-1 | Analysis by computational fluid dynamics of the influence of mixing on a polymorphic drug crystallization process | *Christelle A Herman, Veronique Halloin, Benoit Haut Universite Libre de Bruxelles, Chemical Engineering Department |
296972-1 | Direct numerical simulation of reactive absorption in gas-liquid flow on structured packing using interface capturing method | *Yacine Haroun1, Ludovic Raynal2, Dominique Legendre3 1IFP / Institut de Mecanique des Fluides de Toulouse, UMR CNRS/INPT/UPS; 2IFP; 3Institut de Mecanique des Fluides de Toulouse, UMR CNRS/INPT/UPS |
304820-1 | Detailed dynamic model of a hydrotreating reactor for production of clean fuel | *Eduardo Coselli Vasco de Toledo1, Edvaldo Rodrigo Morais2, Adriano Pinto Mariano2, Delba Nisi Cosme Melo2, Joao Frederico da Costa Azevedo Meyer3, Rubens Maciel Filho2 1Petrobras SA, Paulinia Refinery (REPLAN) - SP - Brazil; 2State University of Campinas (Unicamp), Faculty of Chemical Engineering; 3State University of Campinas (Unicamp), Institute of Mathematics, Statistics and Scientific Computing |
304816-1 | Discrimination of the kinetic model for isomerization of n-butene to iso-butene | *Tai-Shang Chen, Jia-Ming Chern Tatung University, Department of Chemical Engineering |
304631-1 | Evaluation of multiphase CFD models in gasliquid packed-bed reactors for pollution abatement: Euler-Euler versus volume of fluid | *Rodrigo J. G. Lopes, Rosa Quinta-Ferreira University of Coimbra, Department of Chemical Engineering |
301915-3 | Distributed dynamic mathematical model of industrial liquid phase loop propylene polymerizations | *Eneida A. de Lucca1, Rubens Maciel Filho1, Priamo A. Melo2, Jose Carlos Pinto2 1Universidade Estadual de Campinas, Faculdade de Engenharia Quimica; 2Universidade Federal do Rio de Janeiro, Programa de Engenharia Quimica/COPPE |
301903-1 | Local and integral transport characteristics of novel consolidated and unconsolidated structures for catalytic applications | *Hannsjoerg Freund1, Amer Inayat2, Juergen Bauer2, Thomas Zeiser3, Wilhelm Schwieger2 1Max Planck Institute Magdeburg, Physical and Chemical Process Engineering; 2University of Erlangen-Nuremberg, Department of Chemical Reaction Engineering; 3University of Erlangen-Nuremberg, Regionales Rechenzentrum Erlangen |
301670-1 | Simulation of capillary interactions in partially wetted particulate materials | *Zdenek Grof1, Frantisek Stepanek2 1Institute of Chemical Technology Prague, Department of Chemical Engineering; 2Imperial College London, Department of Chemical Engineering |
301630-1 | Temporal evolution of mixing-limited spatial patterns in non-isothermal homogeneous reactors | *Saikat Chakraborty, Ankur Gupta Indian Institute of Technology - Kharagpur, Department of Chemical Engineering |
301323-1 | A new hydrodynamic model for liquid creeping flow through fixed-bed reactors | *Reinhard Gutsche, Gerald Bunke Technical University Berlin, Institute of Biotechnology, Department of Bioengineering |
300462-1 | Introduction of a breakage probability function in the hydrocracking reactor model | Simone Gamba1, *Laura A. Pellegrini1, Vincenzo Calemma2, Chiara Gambaro2 1Politecnico di Milano, Dipartimento di Chimica, Materiali e Ingegneria Chimica; 2Eni S.p.A., Divisione Refining & Marketing - Centro Ricerche di San Donato Milanese |
301915-2 | A kinetic study of poly(ethylene terephthalate) synthesis in a industrial-scale esterification reactor | Elmer Ccopa Rivera1, Victor Hugo Alvarez2, *Joao Carlos Gonzaga1, Martin Aznar2, Rubens Maciel Filho1 1State University of Campinas, School of Chemical Engineering, Laboratory of Optimization, Design and Advanced Control; 2State University of Campinas, School of Chemical Engineering, Laboratory of Phase Equilibria |
301852-2 | Comparison of various approaches in modeling reactive separation with very fast reaction | *Juraj Slava, Zuzana Svandova, Jozef Markos, Ludovit Jelemensky Slovak University of Technology, Institute of Chemical and Environmental Engineering |
301650-3 | On the relationship between Aris and Sherwood numbers and friction and effectiveness factors | *Vemuri Balakotaiah University of Houston |
301022-1 | Numerical investigation of mixing precipitation by using a multi-scale model in a continuous stirred tank | Qinghua Zhang, Zai-Sha Mao, *Chao Yang Chinese Academy of Sciences, Institute of Process Engineering |
298354-1 | Experimental study of the CO2 absorption in NaHCO3-Na2CO3 aqueous solution using interferometry | *Christophe E. Wylock1, Sam Dehaeck1, Pierre Colinet1, Thierry Cartage2, Benoit Haut1 1Free University of Brussels, Chemical Engineering Department; 2Solvay SA |
301677-1 | Hydrodynamic analogy approach for modeling of reactive stripping with structured catalyst supports | *Ulf Brinkmann1, Tilman J. Schildhauer2, Eugeny Y. Kenig1 1Technische Universitaet Dortmund, Department of Biochemical and Chemical Engineering; 2Paul Scherrer Institut, Laboratory of Energy and Materials Cycles |
301938-1 | Dynamics of mass-coupled flow reactors with nonlinear pH-oscillatory reactions — excitability and oscillations | *Lenka Schreiberova, Oldrich Pesek, Igor Schreiber Institute of Chemical Technology, Department of Chemical Engineering |
301650-1 | External and internal mass transfer coefficients in washcoated catalytic monolith reactors | *Saurabh Y. Joshi, Michael P. Harold, Vemuri Balakotaiah University of Houston |
301675-1 | Numerical simulation of soot filtration and combustion within diesel particulate filters | Samir Bensaid, Daniele Marchisio, *Debora Fino, Guido Saracco, Vito Specchia Politecnico di Torino |
297382-1 | User controlled kinetic network generation with INGen | *Craig A. Bennett, Zhen Hou, Michael T. Klein Rutgers University |
301864-2 | Development of an air-cooled microstructured reactor for the partial oxidation of propane | Martin Wichert, David Tiemann, Ralf Zapf, *Gunther Kolb Institut fur Mikrotechnik Mainz GmbH (IMM) |
301880-1 | Potential of microreactors for phase transition controls on immiscible fluids mixing | *Kazuo Matsuyama1, Kozi Mine1, Hideaki Kubo1, Kazuhiro Mae2 1Kao Corporation, Global R and D - Processing Development; 2Kyoto University, Department of Chemical Engineering |
301831-1 | Desorptive cooling of fixed-bed chemical reactors: A practical alternative to microreactors | Manuel Nau, *David William Agar, Marcus Gruenewald University of Dortmund, Department of Reaction Engineering |
299488-2 | Microfluidic-assisted block copolymerizations in continuous-flow: Influence of micromixers characteristics | *Carine Rosenfeld, Christophe A Serra, Georges Hadziioannou CNRS / University Louis Pasteur |
304624-1 | Y separator for liquid-liquid microreactors: experiments and CFD simulations | *David Agar1, Madhvanand Kashid1, Ajay Gorasia3, Vivek Ranade2 1Technical University of Dortmund, Department of Biochemical and Chemical Engineering; 2National Chemical Laboratory, Pune, Catalysis, Reactors and Separation Unit; 3Indian Institute of Technology, Mumbai, Chemical Engineering Department |
304458-1 | Intensification of steam reforming of natural gas: combustible fuel and reforming catalyst comparison | *Georgios Stefanidis, Dionisios G. Vlachos University Delaware |
301918-1 | A new microstructered reaction-calorimeter as screnning tool for thermokinetic and safety parameters | *Juergen Antes, Boris Lennartz, Stefan Lobbecke, Horst Krause Fraunhofer ICT, Energetic Materials |
301604-1 | Determination of the selectivity of the Beckmann rearrangement to caprolactam in a micro reactor | *K.T. Zuidhof, M.H.J.M. de Croon, J.C. Schouten Eindhoven University of Technology, Department of Chemical Reactor Engineering |
297663-1 | Modular microreaction plants for handling of aggressive chemicals | Thomas R. Dietrich, *Andreas Freitag mikroglas chemtech GmbH |
296195-1 | A new methodology for independent control of the molecular weight and particle diameter of polymers utilizing droplets in the microchannel | *Yoshihito Okubo, Taisuke Maki, Fumihito Nakanishi, Tatsuya Hayashi, Kazuhiro Mae Kyoto University, Department of Chemical Engineering |
304133-1 | Microreaction system for environmentally friendly photosynthesis | *Yoshihisa Matsushita1, Naoki Usami2, Yuriko Satoh2, Tadashi Suzuki2, Teijiro Ichimura2 1Tokyo Institute of Technology, Department of Chemistry; 2Tokyo Institute of Technology, Department of Chemistry and Materials Science |
301949-1 | Multi-scale modelling of reaction and transport in porous catalysts | *Petr Koci1, Vladimir Novak1, Frantisek Stepanek1, Milos Marek1, Milan Kubicek2 1Institute of Chemical Technology, Prague, Department of Chemical Engineering; 2Institute of Chemical Technology, Prague, Department of Mathematics |
301913-1 | Mid-infrared sensors for micro reaction plants: approaching chemically motivated process control in miniaturised reactors | *Clemens Minnich1, Frank Sipeer1, Lukas Kupper2, Willi Hempelmann3, Lasse Greiner1, Marcel A. Liauw1 1RWTH Aachen University, Institut fur Technische und Makromolekulare Chemie; 2infrared fiber sensors; 3MMT Micro Mechatronic Technologies GmbH |
301865-1 | Syntheses of building blocks derived from renewable materials by employing microreaction technology | *Stefan Loebbecke1, Tobias Tuercke1, Dusan Boskovic1, Slobodan Panic1, Thomas Frank2, Birgit Kamm3 1Fraunhofer Institute for Chemical Technology ICT; 2Little Things Factory LTF GmbH; 3Biorefinery.de GmbH |
297675-1 | Propagation of pressure waves in microchannels containing gas-liquid slug flow | *Evgeny Rebrov, Mart De Croon, Jaap Schouten Eindhoven University of Technology |
310783-1 | Preparation of hollow nanosphere consisting of double layer of hydrophilic and hydrophobic copolymer | *Hideki Matsune, Daisuke Sakurai, Sakae Takenaka, Masahiro Kishida Kyushu University |
305907-1 | Microtube-type reformers combined with a combustion system for steam reforming of methanol | *Choji Fukuhara1, Yoshiyuki Kamata2 1Shizuoka University; 2Hachinohe Institute of Technology |
301863-1 | Effective interfacial area in a slug flow capillary microreactor and microscale countercurrent liquid/liquid extraction | Aras Ghaini, *David W. Agar Technical University of Dortmund, Department of Bio- and Chemical Engineering, Institute of Reaction Engineering (TCB) |
299928-1 | Rate enhanced and green ethoxylation of para-chloronitrobenzene in a microchannel reactor | *Salah H.M. Aljbour, Hiroshi Yamada, Tomohiko Tagawa Nagoya University, Department of Chemical Engineering |
296851-2 | Microreactor numbering-up technique for industrial-scale applications: Impact of channels arrangement on the reactor performances | Meryem Saber, Jean-Marc Commenge, *Laurent Falk CNRS-ENSIC |
296851-1 | Performance comparison of micromixers | *Laurent Falk, Jean-Marc Commenge LSGC-CNRS |
299830-1 | A novel compact reactor for 3-phase hydrogenation | *Lioubov Kiwi-Minsker, Martin Grasemann, Albert Renken Ecole polytechnique federale de Lausanne |
297240-1 | Rational design of hierarchically structured porous catalysts | Gang Wang, *Marc-Olivier Coppens Rensselaer Polytechnic Institute, Department of Chemical and Biological Engineering |
304887-1 | Microchannel reactor architecture enables greener processes | *Jan J. Lerou, Anna Lee Y. Tonkovich, Laura Silva, Steve Perry, Jeff McDaniel Velocys, Inc. |
301610-3 | Investigation of a constructal mixer for rapid reaction | *Xing-Gui Zhou1, Zhi-Wei Fan1, Ling-Ai Luo2, Wei-Kang Yuan1 1East China University of Science & Technology, State Key Laboratory of Chemical Engineering; 2LOCIE-Universite de Savoie |
300501-1 | Intensification of heat transfer in compact reactor/heat exchanger by TiO2-ethylene glycol nanofluids | *Xiaolei Fan1, Haisheng Chen2, Yulong Ding2, Pawel K. Plucinski1, Alexei A. Lapkin1 1University of Bath, Department of Chemical Engineering; 2University of Leeds, Institute of Particle Science and Engineering |
300496-3 | Experimental and theoretical study of gas/solid mass transfer in metallic filters as supports for micro-structured catalysts | Enrico Tronconi1, Gianpiero Groppi1, Enrico Tronconi1, *Giulia Bozzano2, Mario Dente2 1Politecnico di Milano, Dipartimento di Energia; 2Politecnico di Milano, Dipartimento di Chmica Materiali e Ingegneria Chimica “G. Natta” |
304558-1 | Multiscale modelling of microchannels for catalytic gas-phase processes | *Jose Rafael Hernandez, Johan Warna, Adriana Kurman, Kalle Arve, Kari Eranen, Dmitry Yu. Murzin, Tapio Salmi Abo Akademi University, Laboratory of Industrial Chemistry and Reaction Engineering |
304869-1 | Preparation of Cu-Zn-Al/ZrO2 catalyst washcoat for reforming of methanol in a microreactor | Kuen-Song Lin, *Cheng-Yu Pan, Hsiu-Ping Yeh, Chuin-Tih Yeh, Chia-Chieh Shen Yuan Ze University, Department of Chemical Engineering & Materials Science |
303815-1 | Preparation of sea urchin-like nickel particles under rapid wet chemical process | *Hailong Hu, Katsuyasu Sugawara Akita University |
297328-1 | Study on reactive kinetics of synthesizing cyclohexene carbonate from cyclohexene oxide with carbon dioxide | *Yun-jin Fang, Bai-ping Liu, Yang Zhang, Zhen-min Cheng East China University of Science and Technology, State Key Laboratory of Chemical Engineering |
299097-1 | Novel fouling tolerant fixed bed reactor | *Ramesh Gupta Exxon Mobil Research and Engineering Company |
304860-1 | Steam reforming of biogases in a membrane reactor | *Naotsugu Itoh, Mitsuhiro Aketa, Takeyuki Suzuki, Ken-ichi Mimura, Takafumi Sato Utsunomiya University, Department of Applied Chemistry |
303370-1 | Simultaneous dry reforming and desulfurization of bio-methane with non equilibrium electric discharge at ambient temperature | *Yasushi Sekine, Junya Yamadera, Masahiko Matsukata, Eiichi Kikuchi Waseda University, Department of Applied Chemistry |
301925-1 | Direct production of hydrogen peroxide from oxygen and hydrogen applying membrane-permeation mechanism | *Tomoya Inoue1, Yusuke Tanaka2, David Alfredo Pacheco Tanaka1, Toshishige M. Suzuki1, Koichi Sato1, Masateru Nishioka1, Satoshi Hamakawa1 1National Institute of Advanced Industrial Science and Technology (AIST); 2Tohoku University, Graduate School of Science |
298904-1 | Autothermal reactor concept for combining oxidative coupling and reforming of methane | *T. P. Tiemersma, M. van Sint Annaland, J.A.M. Kuipers University of Twente, Faculty of Science and Technology - Fundamentals of Chemical Reaction Engineering |
305362-1 | Improved economics of partial oxidation processes: An industrial case study of the development of the thermo plate reactor | *Ruediger von Watzdorf1, Gerhard Olbert1, Claus Hechler1, Ulrich Hammon1, Freimut Marold2 1BASF SE, Reaction Engineering; 2DEG Engineering |
301858-1 | Self-heat recuperation technology for sustainable chemical process | *Naoki Tsuru1, Kazuyoshi Sato1, Yasuki Kansha2, Chihiro Fushimi2, Kaoru Shimogawara3, Atsushi Tsutsumi2 1The University of Tokyo; 2The University of Tokyo, Institute of Insustrial Sciense; 3Chiyoda Advanced Solutions Corp. |
301668-1 | Production of the green solvent ethyl lactate using a novel process (SMBR) | *Carla Sofia Pereira, Viviana Manuela Silva, Alirio Egidio Rodrigues Porto University, LSRE - Laboratory of Separation and Reaction Eng. |
297231-1 | Heat transfer in structured packings with co-current flow of gas and liquid | Kalyani Vishwas Pangarkar1, Tilman Johannes Schildhauer2, Ruud van Ommen3, John Nijenhuis3, Freek Kapteijn4, *Jacob Moulijn4 1Delft University of Technology, Catalysis Engineering / Delft University of Technology, Process and Product Engineering; 2Paul ScherrerInstitut, Laboratory for Energy and Materials Cycles; 3Delft University of Technology, Process and Product Engineering; 4Delft University of Technology, Catalysis Engineering |
304489-1 | Experiments of creating carbon nanotubes in low temperature liquid | *toshinobu shigematsu1, Hiroharu Kawasaki2, Yuuki Johno3, Kenji Nakashima4, Bunji Ono4 1SASEBO National College of Technology, Department of Control Engineering; 2SASEBO National College of Technology, Department of Electrical Engineering; 3SASEBO National College of Technology, Department of Chemical and Biological Engineering; 4SASEBO National College of Technology, Department of Mechanical Engineering |
303179-1 | Internally illuminated monolith reactor model | *Joana T. Catneiro1, Rob Berger2, Jacob A. Moulijn1, Guido Mul1 1Delft University of Technology; 2Anaproc |
301954-1 | Oxidation of dissolved organic contaminants in shuttle orbiter humidity condensates | *Luigi Rutigliano, Debora Fino, Guido Saracco, Vito Specchia, Paolo Spinelli Politecnico di Torino |
301678-1 | Cyclic hybrid adsorbent-membrane reactor (HAMR) studies for hydrogen production | Aadesh Harale1, Hyun-Tae Hwang1, Paul Liu2, Muhammad Sahimi1, *Theodore Tsotsis1 1University of Southern California; 2Media and Process Technology Inc |
301665-1 | Process development for small-scale direct synthesis of hydrogen peroxide in a catalytic membrane contactor | *Aneta Pashkova, Roland Dittmeyer DECHEMA e.V., Karl-Winnacker-Institute, Technical Chemistry Department |
301137-1 | Autothermal operation of an adiabatic simulated countercurrent reactor | *Volker M. Zahn1, Andreas Seidel-Morgenstern2 1Max Planck Institute for Dynamics of Complex Technical Systems, Physical and Chemical Foundations of Process Engineering ; 2Otto-von-Guericke-Universitat Magdeburg |
300496-1 | Development and industrial pilot tests of novel conductive structured catalysts for o-xylene oxidation to phthalic anhydride | Enrico Tronconi1, *Gianpiero Groppi1, Enrico Tronconi1, Federico Cruzzolin2, Roberto Leanza2, Carlotta Cortelli2, Serge Marsaud3 1Politecnico di Milano, Dipartimento di Energia; 2Polynt R&D; 3Corning Europe Technology Center |
304597-1 | Microwave reactor modeling for preparation of fine chemicals | *Blanka Toukoniitty1, Johan Warna1, Mikko Helle2, Henrik Saxen2, Dmitry Yu. Murzin1, Tapio Salmi1 1Abo Akademi University, Department of Industrial Chemistry and Reaction Engineering; 2Abo Akademi University, Heat Engineering Laboratory |
304589-2 | Oxygen separation studies using mixed conducting ceramic hollow fibre membranes | Serbia Rodulfo-Baechler1, Alan Thursfield1, Danai Poulidi1, Kang Li2, *Ian Saxley Metcalfe1 1Newcastly University; 2Imperial College London |
301316-1 | Melt polycondensation process of poly(ethylene terephthalate) in grid falling film tower | *Zhenhao Xi1, Ling Zhao1, Weizhen Sun1, Zhaoyan Liu2 1East China University of Science and Technology, State Key Laboratory of Chemical Engineering; 2Beijing Innovation Polymerization Technology Company |
304880-1 | Multi-scale modeling of microstructured Fischer-Tropsch reactors | *Bin Yang, Kai Jarosch, Lee Tonkovich, Sean Fitzgerald, Dongming Qiu, Luke Schrader, Harley Freeman Velocys, Inc. |
302179-1 | Pd-based membrane reactor for syngas upgrading | *Giuseppe . Barbieri1, Adele Brunetti1, Enrico Drioli2 1Institute on Membrane Technology of National Reaserch Council; 2The University of Calabria - Department of Chemical Engineering and Materials |
301947-1 | Compartmental modelling of a structured heat exchanger reactor: Conversion and temperature profiles predictions | Roda Bounaceur1, *Jean-Pierre Leclerc1, Mahvand Vafaei2, Patrice Tochon2, Fabrice Chopard3 1LSGC, Nancy Universite-CNRS; 2CEA GRETh Grenoble; 3AlfaLaval Vicarb Grenoble |
300873-1 | Mass transfer in gas-liquid rotating solid foam reactors | *Roman Tschentscher, T. A. Nijhuis, John van der Schaaf, Ben F.M. Kuster, Jaap C. Schouten Eindhoven University of Technology, Department of Chemical Engineering and Chemistry |
304448-1 | In situ catalyst activity control on a novel membrane reactor | *Danai Poulidi, Ian S. Metcalfe Newcastle University, School of Chemical Engineering and Advanced Materials |
304034-1 | Ultrasound to enhance a liquid-liquid reaction | *Anne-Marie Wilhelm, Frederic Laugier, Dulce de Castro, Rana Kidak, Henri Delmas Université de Toulouse, Laboratoire de Génie Chimique-INPT |
301775-2 | Process development and reactor analysis of coal pyrolysis to acetylene in hydrogen plasma reactor | *Yi Cheng, Jiaqi Chen Tsinghua University, Department of Chemical Engineering |
301656-1 | Packed bed membrane reactor for the oxidative dehydrogenation of propane on Ga2O3/MoO3 based catalyst | *Zeljko Kotanjac, M. van Sint Annaland, J. A. M. Kuipers University of Twente, Fundamentals of Chemical Reaction Engineering |
301124-1 | Gas-liquid mass transfer In a rotor-stator spinning disc reactor | *Marco Meeuwse, John Van der Schaaf, Ben F.M. Kuster, Jaap C. Schouten Eindhoven University of Technology, Department of Chemical Engineering and Chemistry, Laboratory of Chemical Reactor Engineering |
297614-1 | Reinventing fluidization in a centrifugal field: Novel technologies and perspectives | *Axel de Broqueville1, Juray De Wilde2 1Inventor; 2Universite catholique de Louvain |
296325-1 | An extractive reactor as the key to a “green” process for biogradable detergents | *Peter Lewis Silveston, Robert R. Hudgins, Ali Lohi, Eric Croiset, William S. Epling University of Waterloo |
305059-1 | Behavior of microscale and nanoscale titania photocatalysts in an oscillatory flow photoreactor | *Po-Lock Yue, Ping Gao, Michael Ho Kei Lee Hong Kong University of Science and Technology |
304875-1 | Direct conversion of natural gas to ethylene, acetylene and hydrogen | *Alexander Kronberg, Maxim Glushenkov, Vladimir Tolstov, Timo Roestenberg Encontech |
301649-1 | Hydrodesulfurization of diesel in a slurry reactor | Zhonghuo Deng, *Tiefeng Wang, Zhanwen Wang Tsinghua University, Department of Chemical Engineering |
304584-1 | Innovative BASF-DOW HPPO process for propylene oxide ex propylene and H2O2 | *Peter Bassler1, Meinolf Weidenbach2, Hans-Georg Goebbel3 1BASF SE, Chemical Engineering GCE; 2HPPO Tech Center DOW TDC Antwerpen N.V. Belgium; 3HPPO Tech Center BASF SE Antwerpen N.V. Belgium |
296502-1 | Analysis of single and multi-stage membrane reactors | *Christof Hamel1, Evangelos Tsotsas2, Andreas Seidel-Morgenstern3 1Otto-von-Guericke-Universitat, Magdeburg, Institute of Process Engineering; 2Otto-von-Guericke-Universitat Magdeburg ; 3Max-Planck-Institut Magdeburg |
297762-1 | Ash attrition and NOx emissions during circulating fluidized bed sewage sludge combustion | *Tadaaki Shimizu, Masanori Toyono Niigata University, Department of Chemistry and Chemical Engineering |
303165-2 | Formation of unburnts in large-scale CFBC fly ashes — Investigation of the driving factors | *Rafal Pawel Kobylecki, Zbigniew Bis Czestochowa University of Technology |
301341-1 | Effect of attrition on particle size distribution and SO2 capture in fluidized bed combustion under high CO2 partial pressure conditions | *Jaakko Juhani Saastamoinen1, Tadaaki Shimizu2, Antti Tourunen1 1VTT Technical Research Centre of Finland; 2Niigata University |
301085-1 | Effects of an increase in gas volume on the fluidization properties in fluidized catalyst beds | *Takami Kai1, Jumpei Horinouchi1, Tsutomu Nakazato1, Toshio Tsutsui1, Takeshige Takahashi1, Mitsuyuki Nakajima2 1Kagoshima University, Department of Applied Chemistry and Chemical Engineering; 2 Ishikawajima Plant Engineering & Construction Co., Ltd. |
304832-1 | Conceptual modeling of regime transition in bubble columns with stability condition | *Ning Yang, Jianhua Chen, Wei Ge, Jinghai Li Chinese Academy of Sciences, Institute of Process Engineering |
304823-1 | Solid suspension in stirred tank reactor:measurments using UVP and CFD simulations | Madhavi Vishal Sardeshpande, *Vivek Vinayak Ranade National Chemical Laboratory, Pune |
304814-2 | Investigation of downflow bubble columns: modeling and experiments | Shantanu Roy, Jayant Kaim, *Rajesh K. Upadhyay Indian Institute of Technology (IIT) - Delhi, Department of Chemical Engineering |
301512-1 | Numerical simulation of gas-liquid-reactors with bubbly flows using a hybrid multiphase-CFD approach (HIRES-TFM) | *Holger Marschall1, Olaf Hinrichsen1, Wolfgang Polifke2 1Technical University of Munich, Chair of Chemical Engineering; 2Technical University of Munich, Chair of Thermodynamics |
304430-1 | Gas-liquid interfacial area in a catalytic distillation packing via X-ray computed tomography | Said AFERKA, Said Aferka, Pierre Marchot, Michel Crine, *Dominique Toye University of Liege, Laboratory of Chemical Engineering |
301977-1 | Periodic operation studies of filtration in gas-liquid monolith reactors | *Mohsen Hamidipour1, Faical Larachi1, Zbigniew Ring2 1Laval University, Department of chemical engineering; 2BP, Residue Hydrocracking |
301592-1 | Ultrasound assisted third-liquid phase-transfer catalysis in a continuous flow reactor: Esterification of sodium salicylate | *Hung-Ming Yang, Guan-Yi Peng National Chung Hsing University, Department of Chemical Engineering |
296933-1 | Radial dispersion in trickle-bed reactors: Comparison between sock and dense loadings | Juan-David Llamas1, *François Lesage1, Gabriel Wild2 1CNRS/Nancy Universites, Laboratoire des Sciences du Genie Chimique; 2CNRS/Nancy Universites, Departement de Chimie Physique des Reactions |
304814-1 | DEM Simulation of gas-solid circulating fluidized beds | *Shantanu Roy, Vaishali Suryawanshi Indian Institute of Technology (IIT) - Delhi, Department of Chemical Engineering |
303165-1 | Operation of large-scale circulating fluidized bed boilers | Rafal Pawel Kobylecki1, Wojciech Nowak1, Roman Walkowiak2, *Tomasz Ozimowski2, Janusz Jablonski2, Jan Wyszynski2, Tadeusz Trybala2 1Czestochowa University of Technology; 2BOT Elektrownia Turow SA |
301779-1 | Effect of flow structures on heat transfer in single and multiphase jet reactors | Sagar Subhash Deshpande1, Channamallikarjun S. Mathpati1, Sagar Shrikant Gulawani1, Jyeshtharaj B. Joshi1, V. Ravi Kumar2, *Bhaskar D. Kulkarni2 1Institute of Chemical Technology, Mumbai; 2National Chemical Laboratory, Pune |
301773-1 | Enhancement of gas holdup and oxygen transfer in three-phase circulating fluidized-bed bioreactors with swirling flow | *Yong Kang1, Sung Mo Son1, Uk Yeong Kim1, Ik Sang Shin1, Heon Jung3, Sang Done Kim2 1Chungnam National University, Department of Chemical Engineering; 2Korea Advanced Institute of Science and Technology, Department of Chemical and Biomolecular Engineering; 3KIER, Synfuel Research Group |
301517-1 | Trickle flow hydrodynamic multiplicity | Werner van der Merwe, *Willie Nicol University of Pretoria |
301466-1 | Clustering behavior of solid particles in liquid-solid circulating fluidized beds | *Ming Yan Liu1, Guo Lin Liu1, Yu Ling Zhu1, Xiao Dong An1 1Tianjin University, School of Chemical Engineering Technology; 2State Key Laboratory of Chemical Engineering |
300996-1 | 1,2-Dichloroethane production by two-step oxychlorination reactions in a fluidized bed reactor | Sang Done Kim, *Kang Seok Go, Yun Kim, Sung Real Son KAIST, Dept. Chemical and Biomolecular Engineering |
297614-3 | An experimental step response study of a rotating chimney for rotating fluidized beds | *Evgeniy Burlutskiy, Juray De Wilde Universite catholique de Louvain |
304818-1 | Microscopic evaluation of the effect of fluidization and compaction on binderless granulation in pressure swing fluidization | *Noor Fitrah Abu Bakar1, Ryohei Anzai1, Amit Suri1, Masayuki Horio1 1Tokyo University of Agriculture and Technology, Deptartment of Chemical Engineering; 2Universiti Teknologi MARA, Faculty of Chemical Engineering |
304814-3 | CFD prediction of liquid maldistribution in trickle bed reactor: parametric study | Shantanu Roy, *Arnab Atta, K. D. P. Nigam Indian Institute of Technology (IIT) - Delhi, Department of Chemical Engineering |
301618-1 | Volume of fluid (VOF) simulations of rise of single/multiple bubbles | *Swapna S. Rabha, Vivek V. Buwa Indian Institute of Technology-Delhi, Department of Chemical Engineering |
300777-2 | Modelling of trickle bed reactors conducted under gas feed modulation | *Frank E. Stuber1, Maria Alejandra Ayude2, Patricia M. Haure2, Josep Font1, A. Fortuny1, C. Bengoa1, A. Fabregat1 1Universitat Rovira i Virgili, ETSEQ, Departament d'Enginyeria Quimica; 2UNMDP, CONICET, Instituto Nacional de Tecnologia de los Materiales INTEMA |
296868-1 | Mechanism of coal combustion in oxygen enhanced conditions | *Wojciech Nowak1, Tomasz Klajny2, Jaroslaw Krzywanski1, Tomasz Czakiert1 1Czestochowa University of Technology; 2Doosan Babcock Energy |
303540-1 | Simulation and measurement of gas-liquid flow field in up-flow ejectors with and without swirl | *Yun Yao1, Fang-fei Guo2, Bo Zhou2, Shi-qing Zheng1 1Qingdao University of Science and Technology, Research Center for Computer and Chemical Engineering; 2Qingdao Yinke Process Information Technology CO.,LTD. |
301948-1 | Long-term sulfation behavior of limestone sorbents | *Jinsheng Wang, Edward J. Anthony CANMET Energy Technology Centre, Natural Resources Canada |
301601-1 | Probability density function simulation (PDF) of turbulent reactive gas-solid flow in a FCC riser | *Suryanarayana Prasad Vegendla, Geraldine J. Heynderickx, Guy B. Marin Univerisity of Gent, Laboratory for Chemical Technology (LCT) |
301288-1 | Comparison between upflow reactor and trickle-bed reactor in gas-liquid-liquid-solid four-phase reaction | *Yuya Matsunaga, Hiroshi Yamada, Tomohiko Tagawa Nagoya University, Department of Chemical Engineering |
301871-1 | Control of acid-site location of MFI zeolite by catalytic cracking of silane and its application to olefin synthesis from acetone | *Teruoki Tago1, Mariko Sakamoto1, Kazuyuki Iwakai1, Hirotomo Nishihara2, Shin R. Mukai1, Tunehiro Tanaka3, Takao Masuda1 1Hokkaido University, Division of Chemical Process Engineering; 2Tohoku University, Institute of Multidisciplinary Research for Advanced Materials; 3Kyoto University, Division of Molecular Engineering |
301875-1 | Liquid phase diffusivity of benzene within mesoporous materials measured by laser Raman technique | *Yuta Nakasaka1, Teruoki Tago1, Kazuhisa Yano2, Takao Masuda1 1Hokkaido University, Division of Chemical Process Engineering; 2Toyota Central R&D Labs., Frontier Research Division |
301682-1 | Kinetics of reductive alkylations of phenylene diamines: Influence of substrates isomeric structure | *Debdut S. Roy1, Amit S. Chaudhari2, Raghunath V. Chaudhari1 1The University of Kansas, Center for Environmentally Beneficial Catalysis; 2National Chemical Laboratory, Pune, Catalysis, Reactors and Separation Unit (CReST) |
301591-1 | Effect of fiber-network microstructure of paper-structured catalyst on methanol reforming behavior | *Hirotaka Koga1, Takuya Kitaoka1, Hiroyuki Wariishi1, Mitsuyoshi Nakamura2 1Kyushu University, Department of Forest and Forest Products Sciences; 2R & D Division, F. C. C. Co. Ltd. |
309716-1 | Mechanistic study of the Fischer-Tropsch synthesis using transient kinetics | *Nilenindran Sundra Govender Eindhoven University, Deparartment of Chem. and Chem. Eng |
304660-2 | Acidity control of Al-SBA-15 and its effect on the catalytic performance for steam reforming of dimethyl ether | Son-Ki Ihm, *Ji Sun Yun, Sod-Erdene Bazardorj KAIST |
304033-1 | Network analysis of synergic dynamic effects of simultaneous oxidation and reduction in three-way catalytic converters | *Igor Schreiber1, Otto Hadac1, Martin Kohout1, Milan Kubicek2, Milos Marek1 1Institute of Chemical Technology, Prague, Department of Chemical Engineering; 2Institute of Chemical Technology, Prague, Department of Mathematics; 3Institute of Chemical Technology, Prague, Center for Nonlinear Dynamics of Chemical and Biological Systems |
301664-1 | Ageing mechanisms on PdOx based catalysts for natural gas combustion in premixed burners | *Stefania Specchia1, Pietro Palmisano1, Elisabetta Finocchio2, Guido Busca2, Guido Saracco1 1Politecnico di Torino, Department of Materials Science and Chemical Engineering; 2Universita di Genova, Department of Chemical and Process Engineering |
301650-2 | Bifurcation analysis of CO and H2 oxidation in catalytic monolith reactors | *Divesh Bhatia, Michael P. Harold, Vemuri Balakotaiah University of Houston |
301156-1 | A hybrid single event microkinetic (SEMK) model for the synergy between shape selective and non selective bifunctional zeolites | *Indranil Roy Choudhury1, J.W. Thybaut1, P. Balasubramanian1, J.F.M. Denayer2, J.A. Martens3, G.B. Marin1 1Ghent University, Laboratory for Chemical Technology; 2Vrije Universiteit Brussel, Department of Chemical Engineering; 3K.U. Leuven, Centre for Surface Chemistry and Catalysis |
297366-1 | Heterogeneous oxidation of 2-octanol on 5%Pt-1%Bi/carbon | *Hamza N. Mounzer1, Joe Wood1, Hugh Stitt2 1Birmingham University, Department of Chemical Engineering; 2Johnson Matthey Catalysts |
297223-1 | Effect of reaction temperature on benzene alkylation with ethane into ethylbenzene over PtH-ZSM-5 bifunctional catalyst | *Kae S. Wong, Tanya Vazhnova, Sean P. Rigby, Dmitry B. Lukyanov University of Bath, Department of Chemical Engineering |
304825-1 | Generation of hydrogen peroxide for green selective oxidation | *Laura Torrente Murciano, Laura Torrente Murciano, Andrew Fergusson-Ress, Sang Baelc Shin, Frantisek Stepanek, David Chadwick Imperial College London |
304740-1 | Reaction kinetics of partial hydrogenation of benzene to cyclohexene over Ru-Zn/ZrO2 | *Yueming Ma East China University of Science and Technology, State Key Laboratory of Chemical Engineering |
304589-1 | Temperature programmed studies of novel perovskite type mixed metal oxides: Activity to syngas production and coke formation | *Alan Thursfield1, Vladislav V Kharton2, Alexsey A Yaremchenko2, Michael V Patrakeev2, Ian Saxley Metcalfe1 1Newcastle University, School of Chemical Engineering and Advanced Materials; 2University of Aveiro, CICECO, Department of Ceramics and Glass Engineering; 3UB RAS, Institute of Solid State Chemistry |
301671-1 | High throughput multiscale modeling for design of experiments, catalysts, and reactors: Application to hydrogen production from ammonia | Vinay Prasad, Ayman M. Karim, Zachary Ulissi, Megan Zagrobelny, *Dionisios G. Vlachos University of Delaware |
301529-1 | A novel heterogeneous catalyst for Heck reaction—Study of the metal-support interaction in Pd/CNF catalysts | *Jun Zhu1, Jinghong Zhou1, Tiejun Zhao2, Xinggui Zhou1, De Chen2, Weikang Yuan1 1East China University of Science and Technology, State Key Laboratory of Chemical Engineering; 2Norwegian University of Science and Technology, Department of Chemical Engineering |
301364-1 | Development of UV-Vis and Raman spectroscopy for in-situ catalyst characterization in multiphase reactors | *C. P. Stemmet, T. A. Nijhuis, J. C. Schouten Eindhoven University of Technology, Chemical Engineering & Chemistry, Laboratory of Chemical Reactor Engineering |
300940-1 | Temporal analysis of products reactor as a complementary tool to study the mechanism of some green catalytic reactions | *Maria Olea1, Mizuki Tada2, Yasuhiro Iwasawa2, Veerle Balcaen3, Isabelle Sack3, Guy B. Marin3, Hilde Poelman4 1Teesside University, School of Science and Technology; 2University of Tokyo, Department of Chemistry; 3Ghent University, Department of Chemical Engineering; 4Ghent University, Department of Solid State Science |
299359-1 | Oxidative dehydrogenation of cyclohexane to cyclohexene over V-Mg-O catalyst | *Zhen-Min Cheng, Mei Jin East China University of Science and Technology, State Key Laboratory of Chemical Engineering |
297368-1 | Kinetics for hydrodesulfurization of dibenzothiophene on nitrided molybdena-alumina catalyst | Junji Yamamoto, Takeshi Arahata, Hiroyuki Tominaga, *Masatoshi Nagai Tokyo University of Agriculture and Technology |
304869-3 | Desulfurization of gasoline and diesel by adsorption with Cu(I)-Y zeolite and α-alumina | *Kuen-Song Lin, Yi-Chen Shen, Pei-Shan Chen, Ze-Ping Wang Yuan Ze University, Department of Chemical Engineering & Materials Science |
304677-1 | Effects of coverage of carbon-supported Pt catalysts with organosilica on dehydrogenation of cyclohexane | *Keizo Nakagawa1, Yusuke Tanimoto3, Ken-Ichiro Sotowa1, Shigeru Sugiyama1, Sakae Takenaka4, Masahiro Kishida4 1The University of Tokushima, Institute of Technology and Science, Department of Advanced Materials; 2The University of Tokushima, Center for Frontier Research of Engineering, Department of Geosphere Environment and Energy; 3The University of Tokushima, Faculty of Engineering, Department of Chemical Science and Technology; 4Kyushu University, Graduate School of Engineering, Department of Chemical Engineering |
304660-1 | Characteristics of hybrid catalysts from copper-based metal oxide and γ-Al2O3 for steam reforming of dimethyl ether | Son-Ki Ihm, *Ji Sun Yun, Sod-Erdene Bazardorj KAIST |
302164-1 | Ammoximation of cyclohexanone over TS-1/CNF catalyst | *Qian Zhao1, Xinggui Zhou1, Ping Li1, Weikang Yuan1, Alex Chi-Kin Yip2, Xijun Hu2 1East China University of Science and Technology,State Key Laboratory of Chemical Engineering; 2Hong Kong University of Science and Technology, Department of Chemical Engineering |
301698-1 | Improvement of performance of palladium based catalyst for small methanol reformer | *Yoshihiro Kawamura1, Takashi Yahata1, Akira Igarashi2 1CASIO Computer; 2Kogakuin University |
301595-1 | Palladium nanoparticles supported on bacterial biomass as a novel heterogeneous catalyst: A comparison of Pd/Al2O3 and bio-Pd in the hydrogenation of 2-pentyne | James Andrew Bennett1, Neil Creamer2, Kevin Deplanche2, Lynne Macaskie2, John Michael Winterbottom1, Joe Wood1, *Ian Shannon3 1Birmingham University, Department of Chemical Engineering; 2Birmingham University, Department of Biosciences; 3Birmingham University, Department of Chemistry |
301391-1 | Liquid-solid mass transfer for carbon nanofibers on solid foam reactor packings | *Patrick W.A.M. Wenmakers, John van der Schaaf, Ben F.M. Kuster, Jaap C. Schouten Eindhoven University of Technology |
296092-1 | Numerical prediction of wetting and catalyst efficiencies inside trickle bed reactors | *Frederic Augier, Abdelhakim Koudil, Aude Royon-Lebeaud, Laurent Muszynski, Qamra Yanouri Institut Francais du Petrole, Process development and engineering division |
304905-1 | Adsorption/desorption studies on solid acid alkylation catalysts using a tapered element oscillating microbalance (TEOM) | *Kening Gong1, Palghat Ramachandran3, Keith Hutchenson4, Bala Subramaniam2 1University of Kansas, Chemical and Petroleum Engineering Department; 2University of Kansas, Center for Environmentally Beneficial Catalysis; 3Washington University in St. Louis, Department of Energy, Environmental & Chemical Engineering; 4Dupont Company |
301787-1 | Catalytic active filter for water-gas shift reaction | *Kyung-ran Hwang1, Sung-ho Cho1, Son-ki Ihm3, Chun-boo Lee3, Shin-kun Ryi1, Jong-soo Park1 1Korea Institute of Energy Research, Department of Renewable Energy; 2Korea Advanced Institute of Science and Technology; 3Korea University |
301715-2 | Application of artificial intelligence tools for selection of catalysts in a hydrotreating industrial reactor | Favio Y. Jimenez1, Viatcheslav V. Kafarov1, *Manuel L. Nunez2, R. Maciel Filho3 1Industrial University of Santander; 2Colombian Petroleum Institute; 3Campinas State University |
301654-1 | Synthesis of vertical aligned carbon nanotubes arrays by lamella catalyst in fluidized-bed reactor | *Qiang Zhang1, Meng-Qiang Zhao1, Jia-Qi Huang1, Wei-Zhong Qian1, Yao Wang1, Guo-Hua Luo1, Xin-Di Wu2 1Tsinghua University, Department of Chemical Engineering; 2CNano Technology Limited |
301610-2 | Kinetic study on synthesis of platelet carbon nanofiber by CO disproportionation on ultra-fine Fe3O4 powder | Xing-Gui Zhou1, Wen-Xin Lu1, *Zhi-Jun Sui1, Jing-Hong Zhou1, Ping Li1, De Chen2 1East China University of Science & Technology, State Key Laboratory of Chemical Engineering; 2Norwegian University of Science and Technology, Department of Chemical Engineering |
301505-1 | Mechanism of CO coupling reaction to dimethyl oxalate over Pd/α-Al2O3 | *Yang Ji, Qian Lin, Junqing Tan, Wende Xiao East China University of Science and Technology, State Key Laboratory of Chemical Engineering |
300400-1 | The effect of pretreatment conditions on catalytic activity of SBA-15-supported copper oxide supported on benzene combustion | *Seong-Soo Hong, Jin Sup Yang, Won Young Jung Pukyong National University, Division of Applied Chemical Engineering |
296227-1 | Gold nanoparticle catalysts for the hydro-epoxidation of propene: An in-situ XANES and catalytic study into the adsorption of propene on gold | *T. Alexander Nijhuis1, Elena Sacaliuc2, Bert M. Weckhuysen2, Jaap C. Schouten1 1Eindhoven University of Technology, Laboratory for Chemical Reactor Engineering; 2Utrecht University, Department for Inorganic Chemistry and Catalysis |
304866-1 | Effect of ni doping on ceria magnesium oxide nanosize catalysts for CO oxidation | Nurak Grisdanurak1, *Yupin Phuphuak1 1Thammasat University, Department of Chemical Engineering; 2National Center of Excellence for Environmental and Hazardous Waste Management |
302379-1 | New oscillating reaction: Carbonylation of propargyl alcohol to dimethyl ester of itaconic acid | *Sergey Nikolaevich Gorodsky, Anatoliy Vladimirovich Kurdiukov, Oleg Naumovich Temkin Moscow State Academy of Fine Chemical Technology, Department of Basic Organic Synthesis |
301872-1 | Oxidation of glucose in suspensions of moderately hydrophobized palladium catalysts | *Rosu Marius, Adrian Schumpe Braunschweig University of Technology, Institute of Technical Chemistry |
301610-4 | Catalytic decomposition of methane over nickel catalysts: A kinetic study | Xing-Gui Zhou1, Yun-Fei Sun1, *Zhi-Jun Sui1, Jing-Hong Zhou1, Ping Li1, De Chen2 1East China University of Science and Technology, State Key Laboratory of Chemical Engineering; 2Norwegian University of Science and Technology, Department of Chemical Engineering |
296384-1 | Hydroformylation of 1-octene using rhodium-phosphite catalyst in a thermomorphic solvent system | *Binay K. Dutta1, Maizatul S. Shahrun1, Hilmi Mukhtar1, Subhas Bhatia2 1Universiti Teknology PETRONAS; 2Universiti Sains Malaysia |
296379-1 | A new preparation method of Au/fellic oxide catalyst for low temperature CO oxidation | *Shinji Kudo, Atsushi Inada, Taisuke Maki, Masahiro Yamada, Kazuhiro Mae Kyoto University, Department of Chemical Engineering |
304333-1 | Dry reforming of methane on nickel molybdenum carbide catalyst | Taro Hirose1, *Yasushi Ozawa2, Masatoshi Nagai1 1Tokyo University of Agriculture and Technology, Graduate School of Bio-Applications and Systems Engineering; 2Central Research Institute of Electric Power Industry, Energy Engineering Research Laboratory |
303954-2 | Evidence-based design and optimisation of titania photocatalysts via artificial neural network analysis | *Adesoji Adediran Adesina, Dean Chesterfield University of New South Wales, School of Chemical Sciences & Engineering |
301522-1 | Influence of dispersed liquid hold-up and mass transfer on biphasic catalytic reactions | *Raghunath V. Chaudhari1, Palghat A. Ramachandran2 1The University of Kansas, Department of Chemical & Petroleum Engineering; 2Department of environmental and Chemical Engineering, Washington University in St. Louis |
297638-2 | Green route for ionic liquid catalyzed transesterification of ethylene carbonate with methanol by microwave irradiation | *Manju Mamparambath Dharman, Mi-Kyung Lee, Hye-Rim Shim, Kyung-Hoon Kim, Dae-Won Park Pusan National University |
304493-1 | Paper-structured catalyst for catalytic NOx removal from combustion exhaust gas | *Hirotake Ishihara1, Hirotaka Koga1, Takuya Kitaoka1, Hiroyuki Wariishi1, Akihiko Tomoda2, Ryo Suzuki2 1Kyushu University, Department of Forest and Forest Products Sciences; 2 F. C. C. Co. Ltd, R & D Division |
301864-1 | Development of sulphur-tolerant catalysts for fuel processing applications | *Gunther Kolb, Yong Men, Ralf Zapf Institut fur Mikrotechnik Mainz GmbH |
301808-1 | Preparation of nano-structured carbon spheres for use as a catalyst support in ethylene hydroformylation | *Ji Bong Joo1, You Jung Kim1, Hui Chan Kim2, Jongheop Yi1 1Seoul National University, School of chemical and biological Engineering; 2Honam Petrochemical Corp., Daedeok Research Institute |
297638-1 | Immobilized ionic liquids—A green approach for the cycloaddition of CO2 to allyl glycidyl ether | Mi-Kyung Lee, Hye-Rim Shim, Manju Mamparambath Dharman, Sang-Wook Park, *Dae-Won Park Pusan National University |
301848-1 | Preparation and characterization of heteogeneous ruthenium catalyst on carbon support for ethylene hydroformylation | *You Jung Kim1, Ji Bong Joo1, Wooyoung Kim1, Seogil Oh1, Nam Dong Kim1, Hui Chan Kim2, Jongheop Yi1 1Seoul National University, School of Chemical and Biologica l Engineering; 2Honam Petrochemical Corporation, Daedeok Research Institute |
301056-1 | Characterization and activativity of titanium-MCM-41 from rice husk silica for photocatalytic degradation of methyl orange | Jatuporn Wittayakun1, *Surachai Artkla1, Nurak Grisdanurak2, Kitirote Wantala2, Jatuporn Wittayakun1 1Suranaree University of Technology, School of Chemistry; 2Thammasat University, Department of Chemical Engineering |
303961-1 | Regeneration kinetics of redox catalysts | *Gregory Scott Patience1, Antoine Godefroy1, Roberta Cenni2, Jean-Luc Dubois3 1Ecole Polytechnique de Montreal, Department of Chemical Engineering; 2Haldor Topsoe A/S ; 3Arkema |
298984-1 | Preparation of Pd/La0.5Pb0.5MnO3 catalyst for oxidative carbonylation of phenol to diphenyl carbonate by microwave | *Jun Wei Ge, Yuan Xin Wu, Hua Yuan, Zhi Ping Du Wuhan Institute of Technolog, School of Chemical Engineering and Pharmacy; Key Laboratory for Green Chemical Process of Ministry of Education; Hubei Key Lab of Novel Chemical Reactor & Green Chemical Technology |
301359-1 | Bioreaction network flux analysis for human protein producing Bacillus subtilis based on genome-scale model | *Tuncer H. Ozdamar, Birgul Senturk, Ozge D. Yilmaz, Pinar Kocabas, Guzide Calik Ankara University, Dept of Chemical Engineering |
301931-1 | Enzymatic oxidative polymerization of methoxyphenols | *Takaaki Tanaka1, Masafumi Takahashi1, Hiroyuki Hagino1, Shin-ichi Nudejima1, Hisaki Usui1, Tomoyuki Fujii2, Masayuki Taniguchi1 1Niigata University, Department of Materials Science and Technology; 2Niigata University of Pharmacy and Applied Life Sciences, Department of Food Science and Technology |
301584-1 | Integrated processes of fermentation and adsorption for production of surfactin: Recovery from culture medium | *Ludovic Montastruc1, Tao Liu2, Ludovic Montastruc1, Frederique Gancel1, Ling Zhao2, Iordan Nikov1 1Universite des Sciences et Technologies de Lille; 2East China University of Science and Technology, State Key Laboratory of Chemical Engineering |
303176-1 | A hybrid model of E. coli and multiple steady states | *Jin Il Kim, Doraiswami Ramkrishna Purdue University |
301360-1 | Analysis and engineering of Bacillus subtilis reactions for pathway flux amplification | *Guzide Calik, Ilknur Senver Ozcelik, Yasemin Demirci, Tuncer H. Ozdamar Ankara University, Department of Chemical Engineering |
301666-1 | Experimental analysis and modelling of bone marrow mesenchimal cells proliferation | Giacomo Cao1, Luisa Mancuso1, Maria Ilaria Liuzzo1, Massimo Pisu2, *Alberto Cincotti1, Sarah Fadda1, Alessandro Concas2 1Universita di Cagliari; 2CRS4 |
301630-2 | An analytical method for quantifying transport and reaction of anti-tumor drugs in human tissues | Dwaipayan Mukherjee, *Saikat Chakraborty Indian Institute of Technology - Kharagpur |
301584-2 | Lipopeptides production in TPIFB conditions using iron polymer particles | *Ludovic Montastruc1, Frederique Gancel1, Ludovic Montastruc1, Tao Liu2, Ling Zhao2, Iordan Nikov1 1Universite des Sciences et Technologies de Lille; 2State Key Laboratory of Chemical Engineering, East China University of Science and Technology |
316674-1 | Enzymatic transformation of Panax notoginseng leaves wastes: An environmental-friendly preparation method of anti-tumor activity constituents | Bin-hui Jiang1, *Li Wang2, Yu-qing Zhao3 1Northeastern University, College of Resources and Civil Engineering; 2Shenyang Institute of Chemical Technology, College of Environmental & Biological Engineering; 3Shenyang Pharmaceutical University |
301356-1 | Effect of oxygen transfer on intracellular reaction network of recombinant human growth hormone producing Pichia pastoris | *Pinar Calik1, Ilknur S Ozcelik2, Mehmet Ali Orman1 1Middle East Technical University, Dept of Chemical Engineering; 2The Scientific and Technological Research Council of Turkey |
300875-1 | A Sigma Point method for optimal experimental design | *Rene Schenkendorf1, Michael Mangold1, Andreas Kremling2 1Max Planck Institute for Dynamics of Complex Technical Systems, Department of Process Synthesis and Process Dynamics; 2Max Planck Institute for Dynamics of Complex Technical Systems, Department of Systems Biology |
296758-1 | Operational range for a three-phase fluidised bed biofilm reactor containing low-density particles | *Wlodzimierz Sokol1, Alemayehu Ambaw2 1University of Technology and Life Sciences, Department of Chemical and Bioprocess Engineering; 2Addis Ababa University, Department of Chemical Engineering |
297470-1 | Synthesis of a unique monolithic silica microhoneycomb including 12- molybdophosphoric acid using the ice templating method | *Shin Mukai, Masatoshi Hashimoto, Shinya Murata Hokkaido University, Division of Chemical Process Engineering |
304636-1 | Global model for oxygen transport in 300mm Czochralzski crystal growth of pure silicon in presence of cusp mangetic field | Prashant R Gunjal1, Milind S Kulkarni2, *Palghat A. Ramachandran1 1Washington University in St. Louis, Department of Eng. Env. and Chemical Enginering; 2MEMC |
305312-1 | Reactive crystallization of lithium carbonate nano-particles by microwave irradiation to aqueous solution holding CO2 micro-bubbles | *Masakazu Matsumoto, Masaru Yoshinaga, So-ichiro Hirose, Kaoru Onoe Chiba Institute of Technology, Department of Life and Environmental Sciences |
304884-1 | Seperation of nanoparticles with size exclusion chromatography | *Cemal Ercan1, Ali Al-Somali1, V L Colvin2, Cemal Ercan1 1Saudi Aramco; 2Rice University, Chemistry Department |
304802-1 | The role of C2 in low temperature growth of carbon nanofibers | *Shinsuke Mori, Masaaki Suzuki Tokyo Institute of Technology, Department of Chemical Engineering |
301645-1 | Innovative technologies for the fabrication of ultra-high temperature ceramic materials for extreme environment applications | *Roberto Orru1, Roberta Licheri2, Antonio Mario Locci2, Giacomo Cao1 1University of Cagliari, Dipartimento di Ingegneria Chimica e Materiali / PROMEA Scarl, c/o Dipartimento di Fisica, Cittadella Universitaria di Monserrato; 2University of Cagliari, Dipartimento di Ingegneria Chimica e Materiali |
298999-1 | Preparation and microwave absorption properties of Fe3O4 nano-particles by copper/iron ore cinder | *Zheng Zou, Ai Guo Xuan, Zhi Guo Yan, Yuan Xin Wu, Ning Li Wuhan Institute of Technology, School of Chemical Engineering and Pharmacy; Key Laboratory for Green Chemical Process of Ministry of Education; Hubei Key Lab of Novel Chemical Reactor & Green Chemical Technology |
301582-1 | Composite of MWCNT/PMMA for gaseous toluene detection | *Tawatchai Charinpanitkul1, Amornwong Srisurichan1, Adi Ilcham1, Apinan Soottitantawat1, Yongyuth Wanna2, Noriaki Sano3, Tawatchai Charinpanitkul1 1Chulalongkorn University; 2National Nanotechnology Center; 3University of Hyogo |
300704-1 | Non-metal oxygen reduction electrocatalyst based on platelet carbon nanofiber | *Xin-Sheng Zhang, Jun-Sheng Zheng, Ping Li, Wei-Kang Yuan East China University of Science and Technology |
301607-1 | CO-selective methanation over Ru-γ-Al2O3 catalysts in H2-rich gas for PEM-FC applications | *Camilla Galletti, Stefania Specchia, Guido Saracco, Vito Specchia Politecnico di Torino, Dipartimento Scienza dei Materiali e Ing. Chimica |
301318-1 | Inventory control of PEM fuel cells | *Michael Mangold, Peter Borngraeber, Markus Groetsch Max Planck Institute for Dynamics of Complex Technical Systems |
300704-2 | Electroreduction of oxalic acid to glyoxylic acid on carbon nanofiber electrode | *Xin-Sheng Zhang, Jun-Sheng Zheng, Ming-Xia Wang, Ping Li, Wei-Kang Yuan East China University of Science and Technology |
301854-1 | Evaluation of the reaction products in a DMFC operated with high methanol concentration | *Nobuyoshi Nakagawa, K. Sekimoto, M. S. Masdar, R. Noda Gunma University, Department of Chemical and Environmental Engineering |
293811-1 | Nonisothermal reactor modeling of the polymer electrolyte fuel cell | *Motoaki Kawase, Tatsuya Inagaki, Kouichi Miura Kyoto University, Department of Chemical Engineering |
304859-1 | La0.85Sr0.15Cr0.9Ni0.05Pd0.05O3 perovskite anode for SOFC | *Hiroshi Fukunaga1, Akinori Fueoka1, Toru Takatsuka1, Koichi Yamada2 1Shinshu University, Department of Fine Materials Engineering; 2The University of Tokyo |
301957-1 | High performance sorbents for diesel oil desulfurization | *Simelys Pyris Hernandez, Nunzio Russo, Debora Fino, Guido Saracco, Vito Specchia Politecnico di Torino |
301107-1 | Modeling of a indirect internal reforming solid oxide fuel cell: Effect of inlet fuel on cell performance and temperature gradient | Navadol Laosiripojana1, *Pannipha Dokmaingam1, Suttichai Assabumrungrat2, Apinan Soottitantawat2 1The Joint Graduate School of Energy and Environment; 2Chulalongkorn University |
304810-1 | Improvement on electrochemical properties of Ni/YSZ anode infiltrated by proton conductor of SZY in direct methane solid oxide fuel cell: dependence on amount of SZY | *Yongcheng Jin1, H. Yasutake1, K. Yamahara2, M. Ihara1 1Tokyo Institute of Technology, Research Center for Carbon Recycling and Energy; 2Mitsubishi Chemical Group Science and Technology Research Center, Inc. |
304682-1 | Intercalation control on nickel hydroxide electrode: Effects of aluminium doping and calcination | *Sunmook Lee, Bokkyu Choi, Masahiro Iizuka, Yuichiro Otsuji, Chihiro Fushimi, Atsushi Tsutsumi The University of Tokyo |
301771-1 | Analysis of a proton-conducting SOFC with direct internal reforming | *Amornchai Arpornwichanop, Yaneeporn Patcharavorachot, Suttichai Assabumrungrat Chulalongkorn University, Department of Chemical Engineering |
296123-2 | Lithium selective adsorption on low-dimensional titania nanoribbons | Qin-Hui Zhang, Shao-Peng Li, Shu-Ying Sun, Xian-Sheng Yin, *Jian-Guo Yu East China University of Science and Technology, State Key Lab of Chemical Engineering |
301779-2 | CFD simulation of two fluid Taylor-Couette flow: Stratification and dispersion in a vertical annulus | Sandesh S. Deshmukh, *Jyeshtharaj B. Joshi Institute of Chemical Technology, Mumbai |
296123-1 | LiMn2O4 spinel direct synthesis and lithium ion selective adsorption | *Qin-Hui Zhang, Shu-Ying Sun, Shao-Peng Li, Xian-Sheng Yin, Jian-Guo Yu East China University of Science and Technology, State Key Lab of Chemical Engineering |
304420-1 | Effect of reaction temperature and sonication pretreatment in the hydrothermal process on the morphology of titanate nano-structure | Nawin Viriya-empikul1, Tawatchai Charinpanitkul2, Noriaki Sano3, *Apinan Soottitantawat2, Takeyuki Kikuchi4, Kajornsak Faungnawakij1, Wiwut Tanthapanichakoon1 1National Science and Technology Development Agency, National Nanotechnology Center; 2Chulalongkorn University, Department of Chemical Engineering, Center of Excellence in Particle Technology; 3Kyoto University, Department of Chemical Engineering; 4University of Hyogo, Department of Engineering Science |
301571-1 | Measurement of diffusion coefficients of supercritical CO2 in glass polymers | *Feng He East China University of Science and Technology, Department of Chemical Engineering |