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首页> 外文期刊>Journal of Hazardous Materials >Effects of amoxicillin on nitrogen transformation and bacterial community succession during aerobic composting
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Effects of amoxicillin on nitrogen transformation and bacterial community succession during aerobic composting

机译:阿莫西林对好氧堆肥过程中氮转化和细菌群落演替的影响

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This study systematically analyzed the effects of amoxicillin (AMX) on the nitrogen transformation and its corresponding functional bacterial communities by conducting two aerobic composting experiments, and AMX impact on bacterial community succession was also evaluated. It provides theoretical and methodological support for harmless composting treatment of large quantities of manure containing AMX in China and for the high-quality compost products. The results showed that AMX exerted several effects on basic physicochemical and biological compost parameters. Notably, temperature changes typically accompanying compost maturation were delayed in AMX compost, reflecting altered compost maturation kinetics and bacterial community structure. Moreover, relative to control, AMX inhibited growth and reproduction of dominant bacterial phyla Firmicutes and Bacteroidetes, with respective reductions of 17.8-26.1% and 0-7.76% in relative abundance (RA) and significantly increased Proteobacteria RA by 1.9-24.8%. Thus, AMX altered both compost bacterial community structure and succession. From the perspective of various nitrogen content changes, AMX has a significant effect on nitrogen conversion and release. Simultaneously, AMX may inhibit ammoniated and ammonia oxidizing bacterial activity, while significantly increasing the RA of denitrifying bacteria. Indeed, during early composting with AMX, the RA of denitrifying bacteria was 1361.9-1435.0% of control, highlighting differences in nitrogen transformation and release between groups.
机译:这项研究通过进行两次有氧堆肥实验,系统地分析了阿莫西林(AMX)对氮转化及其相应功能细菌群落的影响,并评估了AMX对细菌群落演替的影响。它为中国无公害的含AMX肥料的堆肥处理和优质堆肥产品提供了理论和方法论支持。结果表明,AMX对基本理化和生物堆肥参数产生了多种影响。值得注意的是,AMX堆肥中通常伴随堆肥成熟的温度变化被延迟,这反映了堆肥成熟动力学和细菌群落结构的变化。此外,相对于对照,AMX抑制了优势菌门纤毛虫和拟杆菌的生长和繁殖,相对丰度(RA)分别降低了17.8-26.1%和0-7.76%,而变形杆菌RA则显着提高了1.9-24.8%。因此,AMX改变了堆肥细菌群落结构和演替。从各种氮含量变化的角度来看,AMX对氮的转化和释放具有重大影响。同时,AMX可能抑制氨化和氨氧化细菌的活性,同时显着增加反硝化细菌的RA。实际上,在使用AMX进行早期堆肥过程中,反硝化细菌的RA占对照的1361.9-1435.0%,突显了各组之间氮转化和释放的差异。

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