降解芽孢杆菌 MZ-1 与玉米秸秆生物炭的结合提高了水溶液中吡虫啉的去除率

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摘要

长效除草剂咪草烟对后续敏感作物植物和生态安全造成了严重威胁。高效固定化微生物技术为修复农药污染提供了一种可持续的解决方案。本研究以 300℃、500℃ 和 700℃的三种玉米秸秆生物炭为载体,固定咪草烟降解菌株蜡样芽孢杆菌 MZ-1,旨在高效去除水环境中的咪草烟。根据咪草烟的去除效率,采用响应面方法对最佳固定条件进行了优化。结果表明,与 700 ℃ 下生产的生物炭相比,500 ℃ 下生产的生物炭虽然对吡虫啉的去除能力较低,但却是最有效的固定化载体。此外,最佳菌株添加量为菌株 MZ-1 (OD600=1)在 3.5 倍生物炭溶液中的悬浮液,最佳固定时间为 18 小时。制备的固定化 MZ-1 对吡虫啉的最大去除率为 79.85%。此外,固定化 MZ-1 对敏感的油菜作物因吡虫啉引起的危害具有更强的解毒功效,超过了单独使用 MZ-1 或生物炭的效果。这项工作的结果表明,固定了降解菌株 MZ-1 的生物炭是一种高效的原位修复策略,可用于虫螨腈污染的生物修复。
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Combination of the degrading bacterium Bacillus cereus MZ-1 and corn straw biochar enhanced the removal of imazethapyr from water solutions
Long residual herbicide imazethapyr has caused a serious threat to subsequent sensitive crop plants and ecological security. Efficient immobilized microorganism technology offers a sustainable solution for remediating pesticides contamination. In this study, three corn straw biochars produced at 300℃, 500℃, and 700℃ were used as carriers to immobilize the imazethapyr degrading strain Bacillus cereus MZ-1, aiming to efficiently remove imazethapyr from the water environment. Response surface methodology was employed to optimize the best immobilization conditions based on the efficiency of imazethapyr removal. The results indicate that the biochar produced at 500 ℃ was the most effective carrier for immobilization, despite having a lower imazethapyr removal capacity compared to the biochar produced at 700 ℃. Additionally, the optimal strain addition amount was a suspension of strain MZ-1 (OD600=1) in a 3.5-fold biochar solution, and the best immobilized time was 18 h. The prepared immobilized MZ-1 achieved a maximum imazethapyr removal efficiency of 79.85 %. Moreover, the immobilized MZ-1 demonstrated enhanced detoxification efficacy against imazethapyr-induced harm in sensitive oilseed rape crops, surpassing the effects of using MZ-1 or biochar alone. Results of this work suggests biochar immobilized degradation strain MZ-1 is a highly effective in-situ remediation strategy for bioremediation of imazethapyr contamination.
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