首页> 外文期刊>Environmental Pollution >Differences in p,p'-DDE bioaccumulation from compost and soil by the plants Cucurbita pepo and Cucurbita maxima and the earthworms Eisenia fetida and Lumbricus terrestris
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Differences in p,p'-DDE bioaccumulation from compost and soil by the plants Cucurbita pepo and Cucurbita maxima and the earthworms Eisenia fetida and Lumbricus terrestris

机译:南瓜,大南瓜和and Eisenia fetida和Lumbricus terrestris在堆肥和土壤中p,p'-DDE生物积累的差异

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摘要

Two plant species, Cucurbita pepo and Cucurbita maxima, and two earthworm species, Eisenia fetida and Lumbricus terrestris, were exposed to soil and compost with equivalent p,p'-DDE contamination. Pollutant bioconcentration was equal in plant roots in both media, but translocation was higher in C. pepo. Bioaccumulation by E. fetida was approximately 6- and 3-fold higher than that by L. terrestris in the soil and compost, respectively. For all species, p,p'-DDE uptake was significantly greater from soil than from compost; 7- to 8-fold higher for plant roots and 3- to 7-fold higher for worms. Abiotic desorption from soil was approximately twice that from the compost. When all the data are normalized for organic-carbon content of the media, the contaminant is more tightly bound by soil than compost. Although the risk associated with p,p'-DDE is higher in soil than compost, important mechanistic differences exist in contaminant binding to organic carbon in the two media.
机译:将两种植物物种南瓜属(Cucurbita pepo)和最大南瓜属(Cucurbita maxima),以及两种Lu物种(Eisenia fetida和Lumbricus terrestris)暴露于土壤和堆肥中,并受到等量的p,p'-DDE污染。在两种培养基中,植物根部的污染物生物浓度均相同,但在C. pepo中易位较高。粪肠球菌在土壤和堆肥中的生物蓄积分别比陆生乳杆菌高约6倍和3倍。对于所有物种,土壤中p,p'-DDE的吸收量都明显大于堆肥。植物根高7至8倍,蠕虫高3至7倍。非生物从土壤中的解吸约为堆肥的两倍。当所有数据都针对培养基中的有机碳含量进行标准化时,污染物比堆肥更紧密地被土壤束缚。尽管在土壤中与p,p'-DDE相关的风险要高于堆肥,但两种介质中污染物与有机碳的结合存在重要的机理差异。

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