
Most recent update: 2020-09-26 15:59:01
The keywords that frequently used in this topics code. | Keywords | Number | |
|---|---|---|---|
| Coal fly ash | 1 | ||
| polyurethane | 1 | ||
| depolymerization | 1 | ||
| basic aqueous solution | 1 | ||
| hydrothermal | 1 | ||
| Environment | 1 | ||
| sludge | 1 | ||
| geopolymer | 1 | ||
| phosphate ion | 1 | ||
| aqueous basic solution | 1 | ||
| grinding | 1 | ||
| mechanical activation | 1 | ||
| dephosphorization slag | 1 | ||
| poly(L-lactic acid) | 1 | ||
| acid treatment | 1 | ||
| phosphorus recovery | 1 | ||
| Life Cycle Assessment | 1 | ||
| Recycling | 1 | ||
| ACKN No. | Title/Author(s) | Keywords | Style |
|---|---|---|---|
| 13 | Concentration of phosphorus from dephosphorization slag by various acids | dephosphorization slag phosphorus recovery acid treatment | P |
| 92 | Effect of grinding method on particle size and phosphate ion elution behavior of sludge | sludge phosphate ion grinding | P |
| 668 | Effect of mechanical activation on geopolymerization of coal fly ash | geopolymer mechanical activation Coal fly ash | O |
| 677 | Effects of reaction temperature and pH on lactic acid yield on poly(L-lactic acid) depolymerization | poly(L-lactic acid) depolymerization basic aqueous solution | P |
| 733 | Effects of operation factors on product yields from polyurethane depolymerization under basic hydrothermal conditions | hydrothermal polyurethane aqueous basic solution | P |
| 768 | Life cycle assessment of a recycling process applying advanced electrical pulse fragmentation: A case study on photovoltaic panels and Lithium-ion batteries | Life Cycle Assessment Recycling Environment | P |
(C) 2020 The Society of Chemical Engineers, Japan. . All rights reserved.
www3.scej.org