肥料
牛粪
食品科学
嗜热菌
黑曲霉
微生物菌剂
枯草芽孢杆菌
有机质
生物
堆肥
中层
微生物联合体
食物垃圾
鸡粪
生物技术
农学
接种
微生物
园艺
细菌
遗传学
肥料
生态学
作者
Weiwei Dong,Rui Zhou,Xudong Li,Hua Yan,Jinshui Zheng,Nan Peng,Shumiao Zhao
标识
DOI:10.1016/j.biortech.2023.130097
摘要
A simplified inoculum agent, only comprising Bacillus subtilis and Aspergillus niger, was utilized for industrial-scale cow-manure composting to investigate its impact on composting performance and microbiome. Inoculants elevated the average and peak temperatures by up to 7 and 10 °C, respectively, during the thermophilic stage, reduced organic matter content, and raised germination index. Inoculation also extended the period of composting above 50 °C from 12 to 26 days. Sequencing unveiled significant shifts in microbial diversity, composition, and function. Aspergillus thrived during the mesophilic phase, potentially initiating composting, whereas Bacillus, Lysinibacillus, and Clostridium were enriched during the thermophilic stage. Metagenomic sequencing revealed an increased abundance of carbohydrate-active enzymes and glycometabolism-related genes responsible for lignocellulose degradation and heat generation after inoculation. These enriched microbes and functional genes contributed to organic matter degradation and temperature maintenance during thermophilic stage, expediting composting. This suggests the effectiveness of this simplified inoculum in industrial-level cow-manure composting.
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