Relating bacterial dynamics and functions to gaseous emissions during composting of kitchen and garden wastes

一氧化二氮 环境科学 废物管理 甲烷 温室气体 硝酸盐 生物降解 堆肥 机械生物处理 环境化学 绿色废弃物 制浆造纸工业 城市固体废物 化学 食物垃圾 生物 生态学 工程类 废物收集 有机化学
作者
Zhicheng Xu,Yu Ma,Lanxia Zhang,Yiyu Han,Jing Yuan,Guoxue Li,Wenhai Luo
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:767: 144210-144210 被引量:153
标识
DOI:10.1016/j.scitotenv.2020.144210
摘要

This study aims to relate bacterial dynamics to gaseous emissions during the composting of kitchen and garden wastes. High-throughput sequencing and Functional Annotation of Prokaryotic Taxa (FAPROTAX) were used to analyse the bacterial community and potential functions during composting, respectively. Results show that the addition of garden waste up to 15% of the total wet weight of composting materials notably mitigated gaseous emissions and improved maturity during kitchen waste composting. Ammonium nitrogen, temperature, oxygen content, and electrical conductivity were identified as critical factors to impact gaseous emissions. The bacterial community analysis indicated that the proliferation of anaerobes during the storage of kitchen waste induced the dramatic emission of methane (CH4) and nitrous oxide (N2O) at the beginning of composting. Adding garden waste could effectively amend the physiochemical properties of composting materials to reduce the relative abundance of microbes (e.g. Desulfotomaculum and Caldicoprobacter) that contributed to gaseous emissions, but enrich those (e.g. Bacillus and Pseudoxanthomonas) for organic biodegradation. Further analysis by FAPROTAX corroborated that adding garden waste could effectively inhibit relevant microbial metabolisms (e.g. fermentation, nitrite/nitrate respiration and sulphate respiration) and thus alleviate the emission of greenhouse gases and odours during kitchen waste composting.
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