Mature compost promotes biodegradable plastic degradation and reduces greenhouse gas emission during food waste composting

堆肥 生物降解 温室气体 化学 环境化学 食物垃圾 废物管理 废弃物 降级(电信) 有机质 环境科学 制浆造纸工业 生物 生态学 有机化学 工程类 电信 计算机科学
作者
Lingxiao Wang,Ruixue Chang,Zhiping Ren,Xin Meng,Yanming Li,Miao Gao
出处
期刊:Science of The Total Environment [Elsevier BV]
卷期号:926: 172081-172081 被引量:23
标识
DOI:10.1016/j.scitotenv.2024.172081
摘要

Mature compost can promote the transformation of organic matter (OM) and reduce the emission of polluting gases during composting, which provides a viable approach to reduce the environmental impacts of biodegradable plastics (BPs). This study investigated the impact of mature compost on polybutylene adipate terephthalate (PBAT) degradation, greenhouse gas (GHG) emission, and microbial community structure during composting under two treatments with mature compost (MC) and without (CK). Under MC, visible plastic rupture was advanced from day 14 to day 10, and a more pronounced rupture was observed at the end of composting. Compared with CK, the degradation rate of PBAT in MC was increased by 4.44 % during 21 days of composting. Thermobifida, Ureibacillus, and Bacillus, as indicator species under MC treatment, played an important role in PBAT decomposition. Mature compost reduced the total global warming potential (GWP) by 25.91 % via inhibiting the activity of bacteria related to the production of CH4 and N2O. Functional Annotation of Prokaryotic Taxa (FAPROTAX) further revealed that mature compost addition increased relative abundance of bacteria related to multiple carbon (C) cycle functions such as methylotrophy, hydrocarbon degradation and cellulolysis, inhibited nitrite denitrification and denitrification, thus alleviating the emission of GHGs. Overall, mature compost, as an effective additive, exhibits great potential to simultaneously mitigate BP and GHG secondary pollution in co-composting of food waste and PBAT.
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