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首页> 外文期刊>Chemical engineering journal >Simultaneous removal of arsenate and antimonate in simulated and practical water samples by adsorption onto Zn/Fe layered double hydroxide
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Simultaneous removal of arsenate and antimonate in simulated and practical water samples by adsorption onto Zn/Fe layered double hydroxide

机译:通过吸附在Zn / Fe层状双氢氧化物上同时去除模拟水和实际水样中的砷和锑

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This study proposes the use of a Zn/Fe layered double hydroxide (Zn-Fe-LDH) material to achieve the simultaneous and efficient removal of As(V) and Sb(V) in aqueous solutions. The Zn-Fe-LDH material has been synthesized by a co-precipitation method and used to remove arsenate and antimonate in both simulated and practical polluted water samples. The adsorption performances were studied by batch experiments and column tests. The experimental result of simulated water samples showed that the adsorption of As(V) or Sb(V) onto Zn-Fe-LDH material can be well described by the Sips isotherm model. It was found that the maximum adsorption capacity for As(V) and Sb(V) in single pollutant system was 151.37 mg g(-1) and 122.03 mg g(-1), respectively. When the adsorbent dosage was 0.2 g L-1, the batch experiments showed that the residual concentration of arsenic or antimonate can be decreased from 2 mg L-1 to lower than 0.005 mg L-1. For the practical polluted water samples from Xikuangshan area, the result showed that the dosage of 0.2 g L-1 Zn-Fe-LDH can make both the arsenic and antimony residual concentrations meet the limit value of drinking water standard recommended by WHO. It is deduced from the column tests that 1 kg Zn-Fe-LDH material might treat 12,500 L polluted water from1 mg L-1 arsenate and 1 mg L-1 antimonate to the level below 10 mu g L-1 and 5 mu g L-1 simultaneously. It is demonstrated that the synthesized Zn-Fe-LDH material is a potential attractive adsorbent for the simultaneous removal of As(V) and Sb(V) in water. (C) 2015 Elsevier B.V. All rights reserved.
机译:这项研究建议使用Zn / Fe层状双氢氧化物(Zn-Fe-LDH)材料来实现同时高效去除水溶液中的As(V)和Sb(V)。 Zn-Fe-LDH材料是通过共沉淀法合成的,用于去除模拟和实际污染水样中的砷和锑。通过分批实验和柱试验研究了吸附性能。模拟水样的实验结果表明,Sips等温模型可以很好地描述As(V)或Sb(V)在Zn-Fe-LDH材料上的吸附。发现单一污染物系统中As(V)和Sb(V)的最大吸附容量分别为151.37 mg g(-1)和122.03 mg g(-1)。当吸附剂用量为0.2 g L-1时,分批实验表明,砷或锑酸盐的残留浓度可以从2 mg L-1降至低于0.005 mg L-1。对于西矿山地区的实际污染水样,结果表明,加入0.2 g L-1 Zn-Fe-LDH可使砷和锑残留浓度均达到WHO推荐的饮用水标准限值。由柱测试得出,1 kg Zn-Fe-LDH材料可以处理1 mg L-1砷酸盐和1 mg L-1锑酸盐中的12,500 L污水,使其浓度低于10μgL-1和5μgL同时为-1。结果表明,合成的Zn-Fe-LDH材料是一种潜在的有吸引力的吸附剂,用于同时去除水中的As(V)和Sb(V)。 (C)2015 Elsevier B.V.保留所有权利。

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