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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.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.Journal of Environmental Management|June 26, 2021
Hydrogen peroxide plus ascorbic acid enhanced organic matter deconstructions and composting performances via changing microbial communitiesQiuqi Niu, Hailong Yan, Qingran Meng, et al.Journal of Biotechnology|May 4, 2021
Biochar reinforced the populations of cbbL-containing autotrophic microbes and humic substance formation via sequestrating CO2 in composting processHailong Yan, Qiuqi Niu, Qiuhui Zhu, et al.Journal of Environmental Management|February 10, 2022
Biochar-based solid acid accelerated carbon conversion by increasing the abundance of thermophilic bacteria in the cow manure composting processPengfei Zhu, Jixuan Li, Xiaoli Wen, et al.Environmental Science and Pollution Research International|June 6, 2022
Lignocellulosic depolymerization induced by ionic liquids regulating composting habitats based on metagenomics analysisHongxiang Yang, Yite Huang, Kecheng Li, et al.Bioresource Technology|January 3, 2022
Red mud conserved compost nitrogen by enhancing nitrogen fixation and inhibiting denitrification revealed via metagenomic analysisYite Huang, Hongxiang Yang, Kecheng Li, et al.The Science of the Total Environment|July 3, 2021
Efficient decomposition of lignocellulose and improved composting performances driven by thermally activated persulfate based on metagenomics analysisSusu Wang, Qingran Meng, Qiuhui Zhu, et al.Pageof 2