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首页> 外文期刊>Environmental Science: Processes & Impacts >As and Sb are more labile and toxic to water spinach (Ipomoea aquatica) in recently contaminated soils than historically co-contaminated soils
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As and Sb are more labile and toxic to water spinach (Ipomoea aquatica) in recently contaminated soils than historically co-contaminated soils

机译:由于和Sb在最近污染的土壤中对水菠菜(Ipomoea Aquatica)的毒性更加不稳,而且污染的土壤比历史污染的土壤更具不稳定和毒性

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摘要

Elevated concentrations of As and Sb impact environmental quality and human health. In this study total and bioavailable As and Sb were measured from recently and historically contaminated soils and the phytotoxicity of these soils was evaluated with Ipomoea aquatica (35-d exposure from germination) using biomass, length of plant tissues and photosynthetic efficiency. As and Sb were both present within the soil (co-contaminated). The bioavailable As and Sb in soils were determined by a Sequential Extraction Procedure (SEP) and compared to total soil concentrations and bioaccumulation in the edible parts of I. aquatica. For both As and Sb, bioavailable concentrations increased proportionally with the total soil concentrations and greater bioavailability in recently contaminated soil was observed. Tissue dry mass and length drastically reduced with increasing total and SEP-bioavailable As and Sb soil concentrations. The total soil concentration was a less sensitive measure of the phytotoxicity of As and Sb than the bioavailable fraction. Shoot length was inhibited by 50% (EC50) at bioavailable As concentrations of 80-96 mg kg(-1) in both recently and historically contaminated soils; however, bioavailable Sb EC50 for shoot length was achieved at lower bioavailable concentrations, 96 (42-219) and 12 (7-19) mg kg(-1) in recently contaminated soils and historically contaminated soils, respectively. Shoot biomass was inhibited by 50% (EC50) at bioavailable As concentrations of 11 (4-30) and 49 (37-65) mg kg(-1) in recently and historically contaminated soils, respectively whereas this occurred at much lower bioavailable Sb concentrations, 2-5 mg kg(-1) in both recently and historically contaminated soils. Aging is important in contaminated soils, it decreases the lability of As and Sb and hence their bioavailability to agricultural plants, thus posing a lower risk of exposure of these metalloids to humans through agricultural plants grown in contaminated soils.
机译:升高的AS和SB的浓度影响环境质量和人类健康。在本研究中,从最近和历史污染的土壤中测量了总和生物可利用的和SB,并使用生物质,植物组织的长度和光合效率评估这些土壤的植物毒性。 AS和Sb都存在于土壤中(共染色)。土壤中的生物可利用和Sb由连续的提取方法(SEP)确定,并与I. Aquatica的可食用部分中的整个土壤浓度和生物累计相比。对于AS和Sb而言,在最近污染的土壤中,生物可利用浓度与全土壤浓度成比例地增加,并且在最近受污染的土壤中较高。组织干肿块和长度随着总共和SEP-生物可利用的含量和Sb土壤浓度而大大降低。总土壤浓度是植物毒性的敏感性较小的植物毒性,而不是生物可征级分。在最近和历史上污染的土壤中,在生物可利用的50%(EC50)中抑制了50%(EC50)的浓度为80-96mg kg(-1);然而,在最近污染的土壤中的较低生物可利用浓度,96(42-219)和12(7-19)毫克(7-19)毫克(-1)分别以历史污染的土壤较低的生物可利用浓度。在最近和历史污染的土壤中,在生物可利用的浓度为11(4-30)和49(37-65)毫克(-1)的浓度,射击生物量分别为11(4-30)和49(37-65)毫克(-1)的浓度。最近和历史污染的土壤中浓度,2-5毫克千克(-1)。衰老在受污染的土壤中是重要的,它降低了AS和Sb的可怜,从而降低了农业植物的生物利用度,从而通过在受污染的土壤中生长的农业植物将这些金属体暴露于人类的风险较低。

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