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Arsenic removal from aqueous solutions by adsorption onto iron oxide/activated carbon magnetic composite

机译:通过吸附到氧化铁/活性炭磁性复合材料上去除水溶液中的砷

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摘要

In this work the adsorption features of activated carbon and the magnetic properties of iron oxides were combined in a composite to produce magnetic adsorbent. Batch experiments were conducted to study the adsorption behavior of arsenate onto the synthetic magnetic adsorbent. The effects of initial solution pH, contact time, adsorbent dosage and co-existing anionic component on the adsorption of arsenate were investigated. The results showed that the removal percentage of arsenate could be over 95% in the conditions of adsorbent dosage 5.0 g/L, initial solution pH 3.0-8.0, and contact time 1 h. Under the experimental conditions, phosphate and silicate caused greater decrease in arsenate removal percentage among the anions, and sulfate had almost no effect on the adsorption of arsenate. Kinetics study showed that the overall adsorption rate of arsenate was illustrated by the pseudo-second-order kinetic model. The applicability of the Langmuir and Freundlich models for the arsenate adsorption data was tested. Both the models adequately describe the experimental data. Moreover, the magnetic composite adsorbent could be easily recovered from the medium by an external magnetic field. It can therefore be potentially applied for the treatment of water contaminated by arsenate.
机译:在这项工作中,将活性炭的吸附特性和氧化铁的磁性结合在一起,形成了磁性吸附剂。进行批处理实验以研究砷酸盐在合成磁性吸附剂上的吸附行为。研究了初始溶液的pH值,接触时间,吸附剂的用量和共存阴离子组分对砷酸盐的吸附的影响。结果表明,在吸附剂量为5.0 g / L,初始溶液pH为3.0-8.0,接触时间为1 h的条件下,砷酸盐的去除率可以达到95%以上。在实验条件下,磷酸盐和硅酸盐导致阴离子中砷的去除率下降更大,而硫酸盐对砷的吸附几乎没有影响。动力学研究表明,砷的总吸附速率可以通过拟二级动力学模型来说明。测试了Langmuir和Freundlich模型对砷酸盐吸附数据的适用性。两种模型都充分描述了实验数据。而且,磁性复合吸附剂可以容易地通过外部磁场从介质中回收。因此,它可以潜在地用于处理被砷酸盐污染的水。

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