Engineering Laboratory for AgroBiomass Recycling & Valorizing, College of Engineering, China Agricultural University, Beijing 100083, China.
Modern Agricultural Engineering Key Laboratory at Universities of Education Department of Xinjiang Uygur Autonomous Region, Xinjiang 843300, China.
Bioresour Technol. 2024 May;399:130623. doi: 10.1016/j.biortech.2024.130623. Epub 2024 Mar 20.
Livestock manure often contains various pollutants. The aim of this study was to investigate how adding amoxicillin (AMX), Cu, and both AMX and Cu (ACu) affected humification during composting and the microbial mechanisms involved. The cellulose degradation rates were 16.96%, 10.86%, and 9.01% lower, the humic acid contents were 18.71%, 12.89%, and 16.78% lower, and the humification degrees were 24.72%, 24.16%, and 15.73% lower for the AMX, Cu, and ACu treatments, respectively, than the control. Adding AMX and Cu separately or together inhibited humic acid formation and decreased the degree of humification, but the degree of humification was decreased less by ACu than by AMX or Cu separately. The ACu treatment decreased the number of core bacteria involved in humic acid formation and decreased carbohydrate and amino acid metabolism during the maturing period, and thereby delayed humic acid formation and humification. The results support composting manure containing AMX and Cu.
牲畜粪便通常含有各种污染物。本研究旨在探讨添加阿莫西林(AMX)、铜(Cu)以及 AMX 和 Cu(ACu)对堆肥过程中腐殖化的影响及其相关微生物机制。纤维素的降解率分别降低了 16.96%、10.86%和 9.01%,腐殖酸含量分别降低了 18.71%、12.89%和 16.78%,腐殖化程度分别降低了 24.72%、24.16%和 15.73%,AMX、Cu 和 ACu 处理组均低于对照组。单独添加 AMX 和 Cu 或同时添加 AMX 和 Cu 均抑制腐殖酸的形成,降低腐殖化程度,但 ACu 处理组比 AMX 或 Cu 单独处理组腐殖化程度降低较少。ACu 处理降低了参与腐殖酸形成的核心细菌数量,并降低了成熟阶段碳水化合物和氨基酸代谢,从而延迟了腐殖酸的形成和腐殖化。研究结果支持堆肥含 AMX 和 Cu 的粪便。