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Evaluation of modified chitosan for remediation of zinc contaminated soils

机译:改性壳聚糖治疗锌污染土壤修饰壳聚糖的评价

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This study evaluated the effects of pure and modified chitosan beads on the remediation of zinc (Zn) polluted soils and estimated the bioavailability of Zn for Indian mustard plants. The soil was spiked with 0 to 400 mg kg(-1) of Zn and subsequently amended with pure chitosan beads (PCB) and chitosan beads modified with molybdenum (MoCB), iron (ICB), single super phosphate (SSPCB) and mono calcium phosphate (MCPCB). Compared to the non-amended soils, chitosan bead amended soils had greater plant biomass, reduced plant metal uptake and increased immobilisation of Zn in soil and pore water. Shoot uptake of Zn decreased the most in MoCB amended soil, and least in PCB amended soil relative to unspiked soil. The decrease in plant Zn uptake and enhanced Zn immobilisation may be attributed to Zn complexation by modified chitosan beads with high surface area and cation exchange capacity (CEC). The application of modified chitosan beads to Zn contaminated soil could significantly decrease Zn bioavailability and toxicity. (C) 2016 Elsevier B.V. All rights reserved.
机译:该研究评估了纯净和改性的壳聚糖珠对锌(Zn)污染土壤修复的影响,估计Zn对印度芥末植物的生物利用度。用0至400mg kg(-1)Zn掺入土壤,随后用钼(MOCB),铁(ICB),单磷酸(SSPCB)和单钙(SSPCB)和单钙(SPCB)和单钙修复用纯壳聚糖珠粒(PCB)和壳聚糖珠搅拌。磷酸盐(MCPCB)。与未修正的土壤相比,壳聚糖珠修正的土壤具有更大的植物生物质,降低植物金属吸收,并在土壤和孔隙水中增加了Zn的固定。 MOCB修正的土壤中Zn的射击摄取下降最多,并且在PCB相对于未加工的土壤中的土壤中最少。植物Zn摄取和增强型Zn固定的降低可归因于具有高表面积和阳离子交换能力(CEC)的改性的壳聚糖珠粒均归因于Zn络合。改性的壳聚糖珠在Zn受污染的土壤中的应用可以显着降低Zn生物利用度和毒性。 (c)2016年Elsevier B.v.保留所有权利。

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