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Enhanced adsorption of arsenate and antimonate by calcined Mg/Al layered double hydroxide: Investigation of comparative adsorption mechanism by surface characterization

机译:煅烧的Mg / Al层状双氢氧化物增强砷和锑酸盐的吸附:通过表面表征比较吸附机理的研究

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This study aims to investigate adsorption mechanisms of As(V) and Sb(V) on calcined Mg/Al layered double hydroxide (LDH). The calcination process of Mg/Al LDH (CLDH) considerably enhanced the adsorption capacity of As(V) and Sb(V) via reconstruction and new formation of brandholzite-like compound, respectively. The maximum adsorption capacity for As(V) and Sb(V) by CLDH was 102.9 mg/g and 303.3 mg/g, respectively. The regeneration efficiency of As(V) by 0.5 M NaOH with 5 M NaCI mixed solution reached 72.3% during five regeneration cycles, while Sb(V) regeneration gradually decreased to 32.0% at the fifth regeneration cycles due to the irreversible surface complexation mechanism. Extended X-ray absorption fine structure (EXAFS) data displayed that Al plays a dominant role in the adsorption of As(V) on CLDH through bidentate-binuclear inner-sphere complex. On the other hand, XRD and EXAFS data revealed that Sb(V) formed a brandholzite-like structure Mg[Sb(OH)(6)](2)center dot 6H(2)O which forms outer-sphere complex by the hydrogen bonding between hexagonal plates of magnesium and antimony hydroxide. Although the formation of brandholzite-like structure causes the partial transformation of original structure of Mg/Al LDH during reconstruction process with decreasing regeneration efficiency, it could be attributed to high binding affinity between Sb(V) and Mg/Al LDH. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项研究旨在研究煅烧的Mg / Al层状双氢氧化物(LDH)上As(V)和Sb(V)的吸附机理。 Mg / Al LDH(CLDH)的煅烧过程通过分别重构和形成新的类似brandholzite的化合物大大提高了As(V)和Sb(V)的吸附能力。 CLDH对As(V)和Sb(V)的最大吸附容量分别为102.9 mg / g和303.3 mg / g。 0.5 M NaOH和5 M NaCl混合溶液对As(V)的再生效率在五个再生周期中达到72.3%,而由于不可逆的表面络合机制,在第五个再生周期中Sb(V)的再生逐渐降低至32.0%。扩展的X射线吸收精细结构(EXAFS)数据显示,Al通过二齿-双核内球络合物在CLDH上的As(V)吸附中起主要作用。另一方面,XRD和EXAFS数据表明,Sb(V)形成了类似于菱镁矿的结构Mg [Sb(OH)(6)](2)中心点6H(2)O,该氢通过氢形成外球络合物镁和氢氧化锑的六边形板之间的键合。尽管类勃兰柱石状结构的形成会导致Mg / Al LDH重建过程中Mg / Al LDH的原始结构发生部分转变,但再生效率却降低,这可能归因于Sb(V)与Mg / Al LDH之间的高结合亲和力。 (C)2018 Elsevier Ltd.保留所有权利。

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