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采用实验室台架实验比较颗粒状活性炭和生物炭对降低毒死蜱和吡虫啉负载量和毒性的相对功效。

Comparison of the Relative Efficacies of Granulated Activated Carbon and Biochar to Reduce Chlorpyrifos and Imidacloprid Loading and Toxicity Using Laboratory Bench Scale Experiments.

机构信息

Department of Environmental Toxicology, UC Davis Marine Pollution Studies Lab, 34500 Highway One, Monterey, CA, 93940, USA.

Anthropocene Institute, 855 El Camino Real, Ste 13A N399, Palo Alto, CA, 94301, USA.

出版信息

Bull Environ Contam Toxicol. 2020 Mar;104(3):327-332. doi: 10.1007/s00128-020-02790-4. Epub 2020 Jan 24.

Abstract

Pesticide loads and associated toxicity can be significantly reduced using integrated vegetated treatment systems, which remove moderately soluble and hydrophobic pesticides, but need a sorbent material to remove more soluble pesticides. Neonicotinoids such as imidacloprid are widely used insecticides, acutely toxic, and have been linked to a range of ecological effects. Laboratory experiments were conducted to test the sorptive capacity of granulated activated carbon and biochar for removing imidacloprid and the organophosphate insecticide chlorpyrifos in a scaled-down treatment system. Simulated irrigation water spiked with individual pesticides was treated with a bench-top system designed to mimic a 600 L carbon installation receiving 108,000 L of flow per day for sixteen days. Biochar reduced insecticides to less than detectable and non-toxic levels. Granulated activated carbon similarly reduced chlorpyrifos, but allowed increasing concentrations of imidacloprid to break through. Both media treated environmentally relevant concentrations, and would be effective if used under conditions with reduced particle loads.

摘要

采用综合植被处理系统可以显著减少农药负荷和相关毒性,这些系统可以去除中等可溶性和疏水性农药,但需要吸附材料来去除更易溶解的农药。新烟碱类杀虫剂如吡虫啉被广泛使用,具有急性毒性,并与一系列生态效应有关。实验室实验测试了颗粒活性炭和生物炭在小型化处理系统中去除吡虫啉和有机磷杀虫剂毒死蜱的吸附能力。用模拟灌溉水对单独的农药进行了处理,该系统采用了一个台式系统,旨在模拟一个每天接收 108000 升流量的 600 升碳装置,运行了 16 天。生物炭将杀虫剂降低到无法检测到的无毒水平。颗粒活性炭也同样降低了毒死蜱的浓度,但允许越来越高浓度的吡虫啉穿透。这两种介质都处理了具有环境相关性的浓度,如果在减少颗粒负荷的条件下使用,将是有效的。

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