PDI改性NH2-MIL-101(Fe)高效去除过氧单硫酸体系中乐果的设计与制备:性能、机理、途径及毒性评价

IF 7.7 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Environmental Research Pub Date : 2025-02-01 Epub Date: 2024-12-03 DOI:10.1016/j.envres.2024.120534
Huixia Zhu, Huayi Zhu, Yu Tian, Xiaoxia Liang, Xia Yang
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引用次数: 0

摘要

有机磷农药乐果(DMT)在农业中的广泛使用对人类健康构成了威胁。采用步进溶剂热法设计并制备了具有强共价键C(=O)-N的苝四羧基二亚胺(PDI)改性NH2-MIL-101(Fe) (PDI/MIL)。光催化和过氧单硫酸根(PMS)活化对PDI/MIL的DMT去除有协同效应。有趣的是,PDI/MIL(1:10)/PMS在18 min的模拟阳光照射下提高了DMT的降解效率(95.6%)。其表观反应速率常数比NH2-MIL-101(Fe)/PMS高24.7倍。对其可重复利用性、稳定性和矿化能力进行了评价,90 min的矿化率达到95.3%。活性的增强与酰胺键的形成有关,酰胺键具有较强的充电器运输能力和产生的活性物质数量。结合HPLC-MS分析结果和Fukui指数分析DMT的分子结构特征,提出了DMT的降解途径。采用生态结构活性关系(ECOSAR)、毒性估计软件工具(T.E.S.T.)和费氏弧菌实验对中间体进行毒性预测。我们的工作为通过光催化激活PMS在有机半导体修饰的金属有机框架上降解DMT的机制提供了深刻的见解。
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The design and preparation of PDI modified NH2-MIL-101(Fe) for high efficiency removal of dimethoate in peroxymonosulfate system: Performance, mechanism, pathway and toxicity assessment.

The widespread use of organophosphorus pesticide dimethoate (DMT) in agriculture poses a threat to human health. In this work, the perylene tetracarboxylic diimide (PDI) modified NH2-MIL-101(Fe) (PDI/MIL) with strong covalent bond C(=O)-N were designed and prepared by a step solvothermal method. The synergistic effect between photocatalytic and peroxymonosulfate (PMS) activation for the DMT elimination over PDI/MIL was gained. Interestingly, PDI/MIL(1:10)/PMS showed boosting degradation efficiency (95.6%) for DMT under 18 min simulated sunlight irradiation. Its apparent reaction rate constant was 24.7 times higher than that of NH2-MIL-101(Fe)/PMS. Moreover, its reusability, stability and mineralization ability were evaluated, and a remarkable mineralization rate of 95.3% with 90 min was achieved. The enhanced activity were attributed to the formation of amide bond that exhibited superior charger transport ability and amount of produced active species. Combined the results obtained from the HPLC-MS and molecular structure characteristics of DMT analyzed by Fukui index, the degradation pathways were proposed. The toxicity of intermediates were predicted by Ecological Structure Activity Relationship (ECOSAR), Toxicity Estimation Software Tool (T.E.S.T.), and Vibrio fischeri experiments. Our work provided deep insights into the mechanisms of DMT degradation via photocatalysis-activated PMS over organic semiconductor modified metal organic frameworks.

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来源期刊
Environmental Research
Environmental Research 环境科学-公共卫生、环境卫生与职业卫生
CiteScore
12.60
自引率
8.40%
发文量
2480
审稿时长
4.7 months
期刊介绍: The Environmental Research journal presents a broad range of interdisciplinary research, focused on addressing worldwide environmental concerns and featuring innovative findings. Our publication strives to explore relevant anthropogenic issues across various environmental sectors, showcasing practical applications in real-life settings.
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