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首页> 外文期刊>Ecotoxicology and Environmental Safety >Removal of hexavalent chromium ions by core-shell sand/Mg-layer double hydroxides (LDHs) in constructed rapid infiltration system
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Removal of hexavalent chromium ions by core-shell sand/Mg-layer double hydroxides (LDHs) in constructed rapid infiltration system

机译:构造快速渗透系统中的核壳砂/镁层双氢氧化物(LDHs)去除六价铬离子

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摘要

This study aimed to determine the efficiencies and mechanisms of hexavalent chromium (Cr(VI)) removal with modified sand coated by Mg-LDHs in constructed rapid infiltration system (CRIS). Mg-LDHs (MgAl-LDHs, MgFe-LDHs) were prepared by co-precipitation method and in situ coated onto the surface of original sand. Scanning Electron Microscope (SEM) and X-Ray Fluorescence Spectrometer (XRFS) were used to analyze physicochemical properties of sand/Mg-LDHs composites. Results obtained confirmed the successful LDHs-coating modification. During the purification experiments, the average removal rates of Cr(VI) were 47.62% for sand/MgAl-LDHs, 34.15% for sand/MgFe-LDHs and 11.61% for original sand, respectively. The sand/Mg-LDHs had a higher Langmuir adsorption capacity and desorption capability for Cr(VI) compared to original sand. The adsorption kinetic data of different adsorbents were better described by pseudo-second-order model. Intra-particle diffusion model was also used to elucidate the adsorption mechanism. Moreover, extracellular polymeric substances, biomass and enzymatic activity of microbes on the modified and original sand were testified and analyzed to study microbial effect on Cr(VI) removal in test columns. Through a rough economic estimation, the reagent cost of sand/MgAI-LDHs synthesis was only RMB (sic) 0.24/Kg. It could be concluded that MgAl-LDHs modified sand is an efficient and economical substrate of CRIS for Cr(VI) removal.
机译:这项研究旨在确定在构造的快速渗透系统(CRIS)中用Mg-LDHs覆盖的改性砂去除六价铬(Cr(VI))的效率和机理。 Mg-LDHs(MgAl-LDHs,MgFe-LDHs)通过共沉淀法制备,并原位涂覆在原砂表面。用扫描电子显微镜(SEM)和X射线荧光光谱仪(XRFS)分析了砂/ Mg-LDHs复合材料的理化性质。获得的结果证实了成功的LDHs-涂层修饰。在纯化实验中,Cr / VI的平均去除率分别为:砂/ MgAl-LDHs为47.62%,砂/ MgFe-LDHs为34.15%,原始砂为11.61%。与原始砂相比,砂/ Mg-LDHs对Cr(VI)具有更高的Langmuir吸附能力和解吸能力。用伪二级模型更好地描述了不同吸附剂的吸附动力学数据。颗粒内扩散模型也用于阐明吸附机理。此外,还对微生物在改性砂和原始砂上的细胞外聚合物,生物量和酶活性进行了测试和分析,以研究微生物对测试柱中六价铬去除的影响。通过粗略的经济估算,沙/ MgAl-LDHs合成的试剂成本仅为0.24元/ Kg。可以得出结论,MgAl-LDHs改性砂是去除Cr(VI)的CRIS的一种高效经济的基质。

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