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Application of magnesite-bentonite clay composite as an alternative technology for removal of arsenic from industrial effluents

机译:菱镁矿-膨润土复合材料作为工业废水除砷的替代技术

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摘要

This study evaluated the feasibility of integrating amorphous magnesite and bentonite clay (composite) as an alternative technology for removing arsenic from industrial effluents. The removal of arsenic from industrial effluents by using magnesite-bentonite clay composite was carried out in batch mode. The effects of equilibration time, adsorbent dosage, adsorbate concentration, and pH on removal of arsenic were investigated. The experiments demonstrated that approximate to 100% arsenic removal is optimum at 30 minutes of agitation, 2g of adsorbent dosage (2g: 100mL, S/L ratio), and 20mg L-1 of arsenic concentration. The adsorption data fitted well to both Langmuir and Freundlich adsorption models, hence proving monolayer and multilayer adsorption. The kinetic studies revealed that the data fitted better to a pseudo-second-order reaction than to a pseudo-first-order reaction, hence proving chemisorption. At optimized conditions, the composite was able to remove arsenic to below World Health Organization water quality guidelines, hence depicting that the composite is effective and efficient in removing arsenic from contaminated water. Based on that, this comparative study proves that the composite is a promising adsorbent with high adsorption capacity for arsenic and can be a suitable substitute for the conventional treatment methods.
机译:这项研究评估了整合无定形菱镁矿和膨润土(复合材料)作为从工业废水中去除砷的替代技术的可行性。使用菱镁矿-膨润土粘土复合材料以分批方式从工业废水中去除砷。研究了平衡时间,吸附剂用量,吸附物浓度和pH值对砷去除的影响。实验表明,在搅拌30分钟,2g吸附剂剂量(2g:100mL,S / L比)和20mg L-1砷浓度下,最佳去除率约为100%。吸附数据非常适合Langmuir和Freundlich吸附模型,因此证明了单层和多层吸附。动力学研究表明,与拟一级反应相比,数据更适合拟二级反应,因此证明了化学吸附。在最佳条件下,该复合材料能够将砷去除到低于世界卫生组织的水质准则,因此表明该复合材料能够有效地从污染水中去除砷。在此基础上,本对比研究证明了该复合材料是一种很有前途的吸附剂,对砷的吸附能力强,可以替代常规处理方法。

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