Most recent update: 2021-08-21 18:44:01
![]() in this topics code. | Keywords | Number | |
---|---|---|---|
Microorganism | 1 | ![]() | |
dry methane fermentation | 1 | ![]() | |
ammonia | 1 | ![]() | |
Nitrous oxide | 1 | ![]() | |
Soap | 1 | ![]() | |
Peat fire model | 1 | ![]() | |
self-heating | 1 | ![]() | |
Firefighting agent | 1 | ![]() | |
pyrolysis | 1 | ![]() | |
Ammonia recovery | 1 | ![]() | |
Industrial wastewater | 1 | ![]() | |
N2O | 1 | ![]() | |
peat fire | 1 | ![]() |
ACKN No. | Title/Author(s) | Keywords | Style |
---|---|---|---|
497 | Self-heating phenomenon by microorganisms causing peat fire | Microorganism self-heating peat fire | P |
499 | Elucidation of N2O production reaction in the soil during soil drying and wetting cycle | N2O | P |
527 | Elucidation of N2O emission dynamics for stabilizing the ammonia-recovery process from wastewater | Ammonia recovery Nitrous oxide Industrial wastewater | P |
574 | Qualitative and quantitative analysis of N gas in carbonization of dry methane fermentation residue | dry methane fermentation pyrolysis ammonia | P |
604 | Soap-based firefighting agent was evaluated firefighting performance by a peat moss fire model that uses the underground as a heat source | Firefighting agent Peat fire model Soap | P |