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强化再循环人工湿地中新型烟碱类杀虫剂的去除:Fe/Mn 生物炭和微生物相互作用的影响。

Enhancing neonicotinoid removal in recirculating constructed wetlands: The impact of Fe/Mn biochar and microbial interactions.

机构信息

Key Laboratory of Land Resources Evaluation and Monitoring in Southwest, Ministry of Education, Sichuan Normal University, Chengdu 610068, China; Engineering Research Center of Tropical and Subtropical Aquatic Ecological Engineering, Ministry of Education, Institute of Hydrobiology, Jinan University, Guangzhou 510632, China; College of Geography and Resources, Sichuan Normal University, Chengdu 610101, China.

College of Geography and Resources, Sichuan Normal University, Chengdu 610101, China.

出版信息

J Hazard Mater. 2024 Sep 5;476:135139. doi: 10.1016/j.jhazmat.2024.135139. Epub 2024 Jul 7.

Abstract

Neonicotinoids pose significant environmental risks due to their widespread use, persistence, and challenges in elimination. This study explores the effectiveness of Fe/Mn biochar in enhancing the removal efficiency of neonicotinoids in recirculating constructed wetlands (RCWs). Results demonstrated that incorporating Fe/Mn biochar into RCWs significantly improved the removal of COD, NH-N, TN, TP, imidacloprid (IMI), and acetamiprid (ACE). However, the simultaneous presence of IMI and ACE in the RCWs hindered the elimination of NH-N, TN, and TP from wastewater. The enhanced removal of nutrients and pollutants by Fe/Mn biochar was attributed to its promotion of carbon, nitrogen, and phosphorus cycling in RCWs, along with its facilitation of the adsorption and biodegradation of IMI and ACE. Metagenomics analysis demonstrated that Fe/Mn biochar altered the structure and diversity of microbial communities in RCWs. A total of 17 biodegradation genes (BDGs) and two pesticide degradation genes (PDGs) were identified within RCWs, with Fe/Mn biochar significantly increasing the abundance of BDGs such as cytochrome P450. The potential host genera for these BDGs/PDGs were identified as Betaproteobacteria, Acidobacteria, Nitrospiraceae, Gemmatimonadetes, and Bacillus. This study offers valuable insights into how Fe/Mn biochar enhances pesticide removal and its potential application in constructed wetland systems for treating pesticide-contaminated wastewater.

摘要

新烟碱类杀虫剂由于其广泛的使用、持久性和消除的挑战,对环境构成了重大风险。本研究探讨了 Fe/Mn 生物炭在增强循环构建湿地(RCWs)中去除新烟碱类杀虫剂效率方面的有效性。结果表明,将 Fe/Mn 生物炭纳入 RCWs 显著提高了 COD、NH-N、TN、TP、吡虫啉(IMI)和噻虫嗪(ACE)的去除效率。然而,RCWs 中同时存在 IMI 和 ACE 会阻碍 NH-N、TN 和 TP 从废水中的消除。Fe/Mn 生物炭对养分和污染物的增强去除归因于其促进了 RCW 中碳、氮和磷的循环,以及促进了 IMI 和 ACE 的吸附和生物降解。宏基因组学分析表明,Fe/Mn 生物炭改变了 RCW 中微生物群落的结构和多样性。在 RCW 中总共鉴定出 17 个生物降解基因(BDGs)和 2 个农药降解基因(PDGs),Fe/Mn 生物炭显著增加了细胞色素 P450 等 BDGs 的丰度。这些 BDGs/PDGs 的潜在宿主属被鉴定为 Betaproteobacteria、Acidobacteria、Nitrospiraceae、Gemmatimonadetes 和 Bacillus。本研究深入了解了 Fe/Mn 生物炭如何增强农药去除效率,以及其在处理农药污染废水的构建湿地系统中的潜在应用。

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