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首页> 外文期刊>Journal of environmental science and health, Part A. Toxic/hazardous substances & environmental engineering >Arsenate removal by layered double hydroxides embedded into spherical polymer beads: Batch and column studies
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Arsenate removal by layered double hydroxides embedded into spherical polymer beads: Batch and column studies

机译:通过嵌入球形聚合物微珠中的层状双氢氧化物去除砷酸盐:批次和柱研究

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In this study, the performance of poly(layered double hydroxides) poly(LDHs) beads as an adsorbent for arsenate removal from aqueous solution was investigated. The poly(LDHs) beads were prepared by immobilizing LDHs into spherical alginate/polyvinyl alcohol (PVA)-glutaraldehyde beads (spherical polymer beads). Batch adsorption studies were conducted to assess the effect of contact time, solution pH, initial arsenate concentrations and co-existing anions on arsenate removal performance. The potential reuse of these poly(LDHs) beads was also investigated. Approximately 79.1 to 91.2 of arsenic was removed from an arsenate solution (50 mg As L-1) by poly(LDHs). The adsorption data were well described by the pseudo-second-order kinetics model and the Langmuir isotherm model, and the adsorption capacities of these poly(LDHs) beads at pH 8 were from 1.64 to 1.73 mg As g(-1), as calculated from the Langmuir adsorption isotherm. The adsorption ability of the poly(LDHs) beads decreased by approximately 5-6 after 5 adsorption-desorption cycles. Phosphates markedly decreased arsenate removal. The effect of co-existing anions on the adsorption capacity declined in the following order: HPO42->> HCO3-> SO42-> Cl-. A fixed-bed column study was conducted with real-life arsenic-containing water. The breakthrough time was found to be from 7 to 10 h. Under optimized conditions, the poly(LDHs) removed more than 82 of total arsenic. The results obtained in this study will be useful for further extending the adsorbents to the field scale or for designing pilot plants in future studies. From the viewpoint of environmental friendliness, the poly(LDHs) beads are a potential cost-effective adsorbent for arsenate removal in water treatment.
机译:本研究研究了聚(层状双氢氧化物)[poly(LDHs)]珠子作为吸附剂从水溶液中去除砷酸盐的性能。通过将LDHs固定在球形海藻酸盐/聚乙烯醇(PVA)-戊二醛珠(球形聚合物珠)中来制备聚(LDHs)微珠。通过批量吸附研究,评估接触时间、溶液pH值、初始砷酸盐浓度和共存阴离子对砷酸盐去除性能的影响。还研究了这些聚乳酸脱氢酶(LDHs)微珠的潜在再利用。约79.1%至91.2%的砷通过聚LDHs从砷酸盐溶液(50mg As L-1)中去除。用伪二阶动力学模型和朗缪尔等温线模型很好地描述了吸附数据,根据朗缪尔吸附等温线计算,这些聚(LDHs)珠子在pH 8下的吸附容量为1.64-1.73 mg As g(-1)。聚LDHs微珠在5次吸附-脱附循环后吸附能力下降了约5-6%。磷酸盐显著降低了砷酸盐的去除。共存阴离子对吸附能力的影响依次下降:HPO42->>HCO3->SO42->Cl-。使用现实生活中的含砷水进行了固定床柱研究。发现突破时间为7至10 h。在优化条件下,聚乳酸脱氢酶(LDHs)脱除了82%以上的总砷。本研究获得的结果将有助于进一步将吸附剂扩展到田间规模或在未来的研究中设计中试工厂。从环境友好性的角度来看,聚LDHs微珠是一种潜在的高性价比吸附剂,用于水处理中去除砷酸盐。

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