Showing results (1-10 of 15) with videos related to
Sort By:
Pageof 2
Journal of Environmental Management|June 2, 2022
Metagenomics analysis unraveled the influence of sulfate radical-mediated compost nitrogen transformation processSusu Wang, Qiuqi Niu, Pengfei Zhu, et al.Bioresource Technology|May 10, 2023
A novel carbon-nitrogen coupled metabolic pathway promotes the recyclability of nitrogen in composting habitatsXiaoli Wen, Yucheng Zhou, Xueling Liang, et al.Journal of Environmental Management|July 23, 2023
Insights into antibiotic resistance gene abundances and regulatory mechanisms induced by ionic liquids during compostingHongxiang Yang, Heng Lu, Kecheng Li, et al.Environmental Pollution (Barking, Essex : 1987)|December 3, 2022
Metagenomic insights into role of red mud in regulating fate of compost antibiotic resistance genes mediated by both direct and indirect waysYite Huang, Xiaoli Wen, Jixuan Li, et al.Journal of Environmental Management|July 21, 2023
The fates of antibiotic resistance genes and their association with cell membrane permeability in response to peroxydisulfate during compostingJixuan Li, Heng Lu, Ao Wang, et al.Journal of Environmental Management|February 21, 2023
Performances of antibiotic resistance genes profile upon the action of biochar-activated peroxydisulfate in compostingJixuan Li, Heng Lu, Hongmei Yang, et al.Bioresource Technology|February 2, 2023
Diversity of lignocellulolytic functional genes and heterogeneity of thermophilic microbes during different wastes compostingXiaolan Li, Kecheng Li, Yiwu Wang, et al.Journal of Hazardous Materials|June 12, 2023
The removal performances and evaluation of heavy metals, antibiotics, and resistomes driven by peroxydisulfate amendment during compostingJixuan Li, Yucheng Zhou, Shuaipeng Liu, et al.Bioresource Technology|June 17, 2022
Exploring the effects of heavy metal passivation under Fenton-like reaction on the removal of antibiotic resistance genes during compostingQiuqi Niu, Kecheng Li, Hongxiang Yang, et al.Chemosphere|May 13, 2022
In-situ generation of H2O2 by zero valent iron to control depolymerization of lignocellulose in composting nicheKecheng Li, Yiwu Wang, Xiaolan Li, et al.Pageof 2