不同微波激活过硫酸盐系统对毒死蜱在土壤中降解的影响:土壤性质、毒性和能量消耗的影响

Xiao Shang , Li Gao , Zheng Sun , Zhenming Liang , Xitao Liu , Chunye Lin , Mengchang He , Wei Ouyang
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引用次数: 0

摘要

不同的微波活化过硫酸盐(MP)系统对土壤中典型的有机磷农药毒死蜱具有相当的降解效率。然而,仅考虑降解效率并不能充分验证MP系统修复毒死蜱污染土壤的有效性。通过多种评价,包括土壤特征、毒性评价和能源消耗评估,对MP技术的有效性进行了调查。土壤形态和结构差异相对较小,但土壤溶解有机质在不同MP处理下存在差异。与母体化合物相比,降解产物的预测毒性降低。MP处理后,高羊茅的急性毒性和固相毒性降低,发芽率增加,茎长和根长增加。然而,液相中残留的氧化剂的毒性不可忽视,使黑麦草种子的发芽率和细菌的发光强度降低~ 35%。恒定的微波温度有利于低浓度毒死蜱的降解,恒定的微波功率有利于高浓度毒死蜱的降解。综上所述,MP技术可能适用于毒死蜱污染土壤的修复,综合评价为其在土壤修复中的实际应用提供了理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Insights into different microwave-activated persulfate systems for chlorpyrifos degradation in soil: Impacts of soil properties, toxicity, and energy consumption

Insights into different microwave-activated persulfate systems for chlorpyrifos degradation in soil: Impacts of soil properties, toxicity, and energy consumption
Different microwave-activated persulfate (MP) systems exhibit considerable degradation efficiency towards chlorpyrifos in soil, a typical organophosphorus pesticide. However, only considering degradation efficiency cannot fully verify the effectiveness of MP systems in remediating chlorpyrifos-contaminated soil. Multiple evaluations, including soil characterization, toxicity assessment, and energy consumption estimation, were conducted to investigate the effectiveness of MP technologies. While the differences in soil morphology and structure were relatively small, soil dissolved organic matter varied with different MP treatments. Compared with parent compounds, the predicted toxicity of the degradation products was reduced. The acute toxicity and phytotoxicity of the solid phase reduced after the MP treatments, with the germination rate, and stem and root lengths of tall fescue being increased. However, the toxicity of residual oxidants in the liquid phase cannot be ignored, reducing ∼35% germination rate in ryegrass seed and luminescence intensity in bacteria. A constant microwave temperature was beneficial for degrading lower concentrations of chlorpyrifos, whereas constant microwave power was beneficial for degrading higher concentrations of chlorpyrifos. In short, the MP technology may be suitable for remediating chlorpyrifos-contaminated soil, and a comprehensive evaluation provides a theoretical basis for its practical application in soil remediation.
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