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微生物固定化蚕沙复合材料增强敌草隆修复及其对土壤微生物群落的影响。

Enhanced diuron remediation by microorganism-immobilized silkworm excrement composites and their impact on soil microbial communities.

机构信息

Key Laboratory of Natural Pesticide and Chemical Biology, Ministry of Education, Key Laboratory of Integrated Pest Management of Crop in South China, Ministry of Agriculture, South China Agricultural University, Guangzhou 510642, PR China.

Key Laboratory of Natural Pesticide and Chemical Biology, Ministry of Education, Key Laboratory of Integrated Pest Management of Crop in South China, Ministry of Agriculture, South China Agricultural University, Guangzhou 510642, PR China.

出版信息

J Hazard Mater. 2019 Aug 15;376:29-36. doi: 10.1016/j.jhazmat.2019.05.014. Epub 2019 May 9.

Abstract

In response to the potential threats stemming from the constantly increasing consumption of herbicides, bioremediation offers a beneficial technology for reducing the widespread herbicide contamination. In order to facilitate the in-situ degradation of diuron, Arthrobacter globiformis D47 is captured onto a biocompatible carrier to assemble the microorganism-immobilized silkworm excrement (MSE) composites. By characterization, bacterial cells are intensively entrapped in/onto the carriers, showing high survival and stable catalytic degradation of target pollutants. Meanwhile, MES composites display excellent adaptiveness and feasibility under different conditions, and the average half-life of diuron is shortened to 7.69 d in sugarcane field where diuron is regularly sprayed for weed management. Importantly, we assess that the use of MSE may generally boost the overall xenobiotic-degrading ability, likely due to the slight alternation of the diversity and composition of soil microbial communities. Taking together, the presented MSE provides an attractive in situ approach for the efficient diuron removal as well as for the more feasible utilization of various pollutant-degrading microorganisms.

摘要

针对源于除草剂不断增加的消耗的潜在威胁,生物修复提供了一种减少除草剂广泛污染的有益技术。为了促进敌草隆的原位降解,将球形节杆菌 D47 捕获到生物相容性载体上,以组装微生物固定蚕沙(MSE)复合材料。通过表征,细菌细胞被密集地困在/载体上,显示出高存活率和稳定的目标污染物催化降解。同时,MES 复合材料在不同条件下表现出优异的适应性和可行性,在定期喷洒除草管理的甘蔗田中,敌草隆的平均半衰期缩短至 7.69 天。重要的是,我们评估 MSE 的使用可能普遍提高整体异生物质降解能力,可能是由于土壤微生物群落的多样性和组成略有改变。总的来说,所提出的 MSE 为高效去除敌草隆以及更可行地利用各种污染物降解微生物提供了一种有吸引力的原位方法。

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