Li Jinye, Wu Songwei, Zheng Jixiang, Sun Xuecheng, Hu Chengxiao
Hubei Provincial Engineering Laboratory for New Fertilizers/College of Resources and Environment, Huazhong Agricultural University, Wuhan, 430070, China; National Key Laboratory for Germplasm Innovation & Utilization of Horticultural Crops, Huazhong Agricultural University, Wuhan, 430070, China.
Guangxi Fruit Industry Technology Research Institute, Nanning, 530105, China.
Chemosphere. 2024 Nov;368:143754. doi: 10.1016/j.chemosphere.2024.143754. Epub 2024 Nov 22.
The low degradation rate of lignocellulose limits the humification process of citrus organic waste composting. This study explored the roles of general microbial inoculation (GM), citrus waste-derived function microbial inoculation (CM), and CM combined with biochar (CMB) in citrus waste compost. Results showed microbial inoculations all promoted lignocellulose degradation and humus formation, but the roles of CM and CMB were better than GM, especially CMB. Compared to the control, CMB raised the temperature and duration of thermophilic phase by 2.8 °C and 4 days, and improved lignin degradation rate and humus content by 21.5% and 7.6%. Furthermore, CMB promoted bacterial community succession and cooperation, and decreased network complexity. Moreover, CMB strengthened the correlation between mainly bacterial communities and polysaccharides, reducing sugars as well as carbohydrates metabolic, enhancing the contribution of bacteria such as Bacillus, Flavobacterium and Staphylococcus to humus and its precursors. It concludes that the naturally derived microbes in compost had better effects on promoting humus synthesis than exogenous microbes, which provides a new route for rapid humification of high-lignin organic waste in composting.
木质纤维素的低降解率限制了柑橘类有机废弃物堆肥的腐殖化过程。本研究探讨了通用微生物接种(GM)、柑橘废弃物源功能微生物接种(CM)以及CM与生物炭联合使用(CMB)在柑橘废弃物堆肥中的作用。结果表明,微生物接种均促进了木质纤维素的降解和腐殖质的形成,但CM和CMB的作用优于GM,尤其是CMB。与对照相比,CMB使嗜热阶段的温度提高了2.8℃,持续时间延长了4天,并使木质素降解率和腐殖质含量分别提高了21.5%和7.6%。此外,CMB促进了细菌群落的演替与合作,并降低了网络复杂性。而且,CMB增强了主要细菌群落与多糖、还原糖以及碳水化合物代谢之间的相关性,增强了芽孢杆菌、黄杆菌和葡萄球菌等细菌对腐殖质及其前体的贡献。研究得出结论,堆肥中天然来源的微生物在促进腐殖质合成方面比外源微生物具有更好的效果,这为堆肥中高木质素有机废弃物的快速腐殖化提供了一条新途径。