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The interactions of metal concentrations and soil properties on toxic metal accumulation of native plants in vanadium mining area

机译:金属浓度与土壤特性对钒矿区本土植物有毒金属积累的相互作用

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High demand of Vanadium (V) in high-strength steel and battery manufacturing industry led to extensive V mining activity in China, and caused multi-metal pollution of soil around V mining area. To understand the phytoremediation potentials of native plants grown in V mining area, and the effect of soil properties and soil metal concentrations on toxic metal accumulations of native plants. Setaria viridis, Kochia scoparia and Chenopodium album were sampled from different sites in V mining area, soil properties, soil metal concentrations and metal accumulation amount of investigated plants were measured, bioaccumulation (BAF) and translocation (TF) efficiencies were calculated. Soil pH, cation exchange capacity (CEC) and available phosphorous (P) can significantly affect V and copper (Cu) uptake in the shoots of Setaria viridis while soil metal contents were lower than the permissible limits. Soil pH can significantly affect V accumulations in the roots and shoots of Kochia scoparia grown in slightly V polluted soils. Setaria viridis exhibited TF 1 for moderately V and slightly chromium (Cr) polluted soils, and BAF 1 for slightly Cu contaminated soils respectively. Kochia scoparia and Chenopodium album showed TF 1 and BAF 1 for slightly V polluted soils, respectively. Setaria viridis was practical for in situ phytoextractions of moderately V and slightly Cr polluted soils, and phytostabilization of slightly Cu contaminated soils. Kochia scoparia and Chenopodium album could be used as phytoextractor and phytostablizer in slightly V polluted soils in V mining area. Metal uptake of native plants grown in slightly multi-metal contaminated sites in V mining area can be manipulated by altering soil properties.
机译:高强度钢和电池制造业对钒的高需求导致中国广泛的钒开采活动,并导致钒矿区周围土壤的多金属污染。了解在V矿区种植的本地植物的植物修复潜力,以及土壤特性和土壤金属浓度对本地植物有毒金属积累的影响。从V矿区不同地点采集了狗尾草,地肤和藜叶白菜,测量了被调查植物的土壤特性,土壤金属浓度和金属累积量,计算了生物累积(BAF)和易位(TF)效率。土壤pH,阳离子交换容量(CEC)和有效磷(P)可以显着影响狗尾草(Setaria viridis)芽中的V和铜(Cu)吸收,而土壤金属含量低于允许的限值。土壤pH值可以显着影响在受到轻微V污染的土壤中生长的地肤(Kochia scoparia)的根和芽中的V积累。狗尾草对中度V和轻度铬(Cr)污染土壤的TF> 1,对轻度Cu污染的土壤的BAF> 1。地肤(Kochia scoparia)和白藜属(Chenopodium Album)分别显示了轻微V污染土壤的TF> 1和BAF> 1。狗尾草对中度V和Cr轻度污染土壤的原位植物提取以及对Cu轻度污染的土壤的植物稳定化非常实用。地肤在V矿区被轻微V污染的土壤中可用作植物提取物和植物稳定剂。可以通过改变土壤性质来控制在V矿区受多金属污染的地方生长的本地植物对金属的吸收。

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