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Removal of heavy metals from simulated wastewater by in situ formation of layered double hydroxides

机译:通过原位形成层状双氢氧化物去除模拟废水中的重金属

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Heavy metal removal from wastewater is an important environmental issue. Sorption by layered double hydroxides (LDHs) and precipitation in alkaline media are two of the main remediation techniques for these pollutants. Here, both processes are compared, with emphasis on the mechanisms involved and the solids obtained as residues. A heavy metal ion solution with high sulfate concentration was used as a simulated wastewater. It was treated with a carbonate-containing Mg-Al LDH to study sorption processes, while alkalization in the presence of Mg2+ ions was used to produce LDH in situ precipitation. The removal capacity of these processes was analyzed and the solids obtained upon remediation were characterized by PXRD patterns and FT-IR spectra. The obtained results were related to the removal mechanisms, the solubility products of heavy metal hydroxides and their capacity to produce LDH phases. High Cu2+ removal capacities were obtained in all cases, while those of Pb2+ and Zn2+ ions depended on the remediation procedure and factors such as Mg2+ ions concentration and final pH. Apart from Pb2+ ions, the heavy metal precipitated as LDH phases, which presented higher stability than simple heavy metal hydroxides and prevented Zn2+ mobilization in basic media. (C) 2016 Elsevier B.V. All rights reserved.
机译:从废水中去除重金属是重要的环境问题。层状双氢氧化物(LDHs)的吸附和在碱性介质中的沉淀是这些污染物的两种主要修复技术。在此,对这两个过程进行了比较,重点是所涉及的机理和作为残留物获得的固体。具有高硫酸盐浓度的重金属离子溶液用作模拟废水。用含碳酸盐的Mg-Al LDH处理它以研究吸附过程,同时在Mg2 +离子存在下碱化用于原位沉淀LDH。分析了这些过程的去除能力,并通过PXRD图谱和FT-IR光谱对修复后获得的固体进行了表征。获得的结果与去除机理,重金属氢氧化物的溶解度产物及其产生LDH相的能力有关。在所有情况下均具有较高的Cu2 +去除能力,而Pb2 +和Zn2 +离子的去除能力取决于修复程序和Mg2 +离子浓度和最终pH等因素。除Pb2 +离子外,重金属以LDH相形式沉淀,比简单的重金属氢氧化物具有更高的稳定性,并阻止了Zn2 +在碱性介质中的迁移。 (C)2016 Elsevier B.V.保留所有权利。

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