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首页> 外文期刊>Bulletin of Environmental Contamination and Toxicology >Effect of Soil Aging on the Phytoremediation Potential of Zea mays in Chromium and Benzo[a]Pyrene Contaminated Soils
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Effect of Soil Aging on the Phytoremediation Potential of Zea mays in Chromium and Benzo[a]Pyrene Contaminated Soils

机译:土壤老化对铬和苯并[a] P污染土壤中玉米的植物修复潜力的影响

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摘要

This study compared the phytoremediation potential of Zea mays in soil either aged or freshly amended with chromium (Cr) and benzo[a]pyrene (B[a]P). Z. mays showed increased shoot biomass in aged soils than in freshly spiked soils. The shoot biomass in contaminated soils increased by over 50 % in aged soil when compared to freshly amended soils, and over 29 % more Cr was accumulated in the shoot of Z. mays in aged soil than in freshly amended soil. Planting Z. mays in aged soil helped in the dissipation of more than 31 % B[a]P than in freshly spiked soil, but in the absence of plants, there seemed to be no difference between the dissipation rates of B[a]P in freshly and aged co-contaminated soil. Z. mays seemed to enhance the simultaneous removal of Cr and B[a]P in aged soil than in freshly spiked soil and hence can be a good plant choice for phytoremediation of co-contaminated soils.
机译:这项研究比较了玉米或旧用铬(Cr)和苯并[a] py(B [a] P)改良过的玉米在土壤中的修复潜力。玉米(Z. mays)显示,老化土壤中的枝条生物量比新鲜加标土壤中的高。与新鲜改良土壤相比,受污染土壤中的枝条生物量在老化土壤中增加了50%以上,并且在老化土壤中,Z。mays枝条中积累的铬比新鲜改良土壤中多29%。在年老的土壤中种植玉米可能比在新掺加的土壤中促进超过31%的B [a] P消散,但是在没有植物的情况下,B [a] P的消散率似乎没有差异。在新鲜和老化的共同污染土壤中。与新鲜加标土壤相比,Z。mays似乎能增强老化土壤中Cr和B [a] P的同时去除,因此可以作为植物修复共同污染土壤的良好植物选择。

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