Insight into humification of mushroom residues under addition of Rich-N sources: Comparing key molecular evolution processes using EEM-PARAFAC and 2D-FTIR-COS analysis
Dingmei Wang(Chinese Academy of Tropical Agricultural Sciences), Guoxue Li(China Agricultural University), Yilin Mao(Jinan University), Jiacong Lin(Chinese Academy of Tropical Agricultural Sciences), Jing Yuan(Zhengzhou University), Liwen Mai(Chinese Academy of Tropical Agricultural Sciences), Zhen Yu(Dongguan University of Technology), Qinfen Li(Chinese Academy of Tropical Agricultural Sciences)
Cited by 47
Related Papers
Sewage sludge biochar as an efficient catalyst for oxygen reduction reaction in an microbial fuel cell
|Bioresource Technology|2013|192
Hyperthermophilic composting significantly decreases N2O emissions by regulating N2O-related functional genes
|Bioresource Technology|2018|141
Hyperthermophilic composting reduces nitrogen loss via inhibiting ammonifiers and enhancing nitrogenous humic substance formation
|The Science of The Total Environment|2019|129
Effect of moisture content, aeration rate, and C/N on maturity and gaseous emissions during kitchen waste rapid composting
|Journal of Environmental Management|2022|120