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Manganese enhances the immobilization of trace cadmium from irrigation water in biological soil crust

机译:锰增强生物土壤结皮中灌溉水中痕量镉的固定化

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The effect of biological soil crust (BSC) in paddy field on the immobilization and removal of heavy metal from irrigation water is an important issue. BSC was cultured in solutions with different concentrations of manganese (Mn) salt and cadmium (Cd) sulfate for 15 days. We analyzed the Mn, Cd and Fe contents in the BSC and investigated the effects of Mn salt on the Cd distribution in different binding-forms in BSC as well. The results show that Mn salt was effective at enabling BSC to immobilize the Cd, and its removal efficiency from irrigation water improved with an increase in the Mn concentration used. The removal of 50.00 mu g/L of Cd from irrigation water by BSC reached as high as 95.70% in present of 20.00 mg/L Mn. The highest obtained biological concentrated factor of BSC for Cd is similar to 2.7 x 10(4). The mainly Cd species (75%) in BSC is the non-EDTA extracted minerals. Based on the SEM-EDS and XPS analyses, it was reasonably inferred that the Mn ion was oxidized by Mn oxidizing bacteria (MOB), to yield the porous spongy-like birnessite with d-spacing of 2.31 angstrom, while Cd was scavenged and immobilized in the crystal lattice. The MOB was identified as Bacillus. This study provides a potentially novel method to decontaminate irrigation water polluted with Cd by using BSC in presence of Mn.
机译:稻田中生物土壤结皮(BSC)对灌溉水中重金属的固定和去除的影响是一个重要的问题。 BSC在含有不同浓度的锰(Mn)盐和硫酸镉(Cd)的溶液中培养15天。我们分析了BSC中Mn,Cd和Fe的含量,并研究了锰盐对BSC中不同结合形式的Cd分布的影响。结果表明,锰盐有效地使BSC固定了Cd,并且随着所用Mn浓度的增加,其从灌溉水中的去除效率也得到了提高。在存在20.00 mg / L Mn的情况下,BSC从灌溉水中去除50.00μg / L的Cd高达95.70%。获得的BSC对Cd的最高生物浓缩因子类似于2.7 x 10(4)。 BSC中主要的Cd物种(75%)是非EDTA提取的矿物。根据SEM-EDS和XPS分析,可以合理地推断Mn离子被Mn氧化细菌(MOB)氧化,产生的多孔海绵状水钠锰矿,d间距为2.31埃,而Cd被清除并固定化在晶格中。 MOB被鉴定为芽孢杆菌。这项研究提供了一种潜在的新颖方法,通过在锰的存在下使用BSC净化被Cd污染的灌溉水。

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