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    微生物燃料电池对噁唑酰草胺的降解及其机理

    Degradation of metamifop in microbial fuel cells and its mechanism

    • 摘要: 针对新型除草剂噁唑酰草胺的环境污染问题,文中研究了不同环境条件对双室微生物燃料电池(MFC)降解该除草剂和产电性能的影响,探究了其电子传递过程和降解机理。结果表明:MFC最佳的产电菌种是脱硫弧菌,其对噁唑酰草降解率可达78.3%,功率密度为103 mW·m−2;最佳的初始pH为8.0,此条件下降解率为81.5%;测试范围内初始噁唑酰草胺质量浓度为0.1 mg·L−1时,MFC性能最好,高浓度的污染物会产生抑制作用;外源添加电子穿梭体(核黄素)能明显提高MFC性能,添加20 mg·L−1核黄素可使降解率提升至94.5%,最大功率密度增至175 mW·m−2,同时提高细胞内NAD+/NADH比值和NADH脱氢酶活性;电子传递抑制剂(鱼藤酮和辣椒素)则抑制了MFC性能。通过液相色谱-质谱联用技术(LC-MS)分析鉴定出多种降解中间产物,并推测了噁唑酰草胺可能的降解途径。研究结果为微生物燃料电池在农药污染修复领域的应用提供了参考。

       

      Abstract: To address the environmental pollution caused by the novel herbicide metamifop, a dual-chamber microbial fuel cell (MFC) was constructed to investigate the effects of different operating conditions on its performance in degrading this herbicide and generating electricity, and its electron transfer process and degradation mechanism were explored.The results showed that the optimal electricity-producing bacterial strain was Desulfovibrio desulfuricans, achieving a metamifop degradation rate of 78.3% and a power density of 103 mW·m−2. The optimal initial pH was 8.0, under which the degradation rate was 81.5%. Within the tested concentration range, the MFC performed best at an initial metamifop concentration of 0.1 mg·L−1, while high concentrations of the pollutant exerted an inhibitory effect. Exogenous addition of an electron shuttle (riboflavin) significantly enhanced MFC performance, with 20 mg·L−1 riboflavin increasing the degradation rate to 94.5% and the maximum power density to 175 mW·m−2, while also increasing the intracellular NAD+/NADH ratio and NADH dehydrogenase activity. It was also found that electron transfer inhibitors (rotenone and capsaicin) suppressed MFC performance. Multiple degradation intermediates were identified through Liquid Chromatography-Mass Spectrometry (LC-MS) analysis, and possible degradation pathways for metamifop were proposed. The findings provide a reference for the application of microbial fuel cells in the field of pesticide pollution remediation.

       

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