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首页> 外文期刊>Journal of Environmental Science and Health. Part B, Pesticides, Food Contaminants and Agricultural Wastes >Adsorption, Transformation, and Bioavailability of the Fungicides Carbendazim and Iprodione in Soil, Alone and in Combination
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Adsorption, Transformation, and Bioavailability of the Fungicides Carbendazim and Iprodione in Soil, Alone and in Combination

机译:杀菌剂多菌灵和异丙嗪在土壤中,单独和组合中的吸附,转化和生物利用度

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摘要

When studying the effect of mixtures of toxic substances on soil organisms, attention must be paid to peculiarities in exposure to mixtures as opposed to that of single toxicants. The fungicides carbendazim and iprodioue compete in the adsorption to soil. The presence of iprodione reduced the adsorption of carbendazim by 30%, while carbendazim reduced the adsorption of iprodione by 70%. Iprodione had little effect on the transformation rate of carbendazim in soil. However, carbendazim retarded the transformation of iprodione in soil by 26%. The concentration of the fungicides in pore water was found to be substantially higher for mixtures than when a fungicide alone was present in the soil. The effect of the additional fungicide on the concentration is especially apparent in the period following the first 1 to 2 weeks of the incubation. The inclusion of copper in the mixture has little additional effect on the concentration of the fungicides in pore water.
机译:在研究有毒物质混合物对土壤生物的影响时,必须注意与单一毒物相反的混合物暴露特性。多菌灵和异丙隆的杀菌剂竞争对土壤的吸附。异丙苯酮的存在使多菌灵的吸附降低了30%,而多菌灵使异丙苯酮的吸附降低了70%。异丙隆对土壤中多菌灵的转化率影响很小。但是,多菌灵将异丙隆在土壤中的转化抑制了26%。对于混合物而言,发现孔隙水中杀菌剂的浓度比土壤中单独存在杀菌剂的浓度高得多。在孵育的前1至2周后的时间内,额外的杀菌剂对浓度的影响尤为明显。混合物中包含铜对孔水中杀菌剂的浓度几乎没有其他影响。

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