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Augmenting granular activated carbon with natural clay for multicomponent sorption of heavy metals from aqueous solutions

机译:用天然粘土增强颗粒状活性炭,从水溶液中进行多组分吸附重金属

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摘要

Multicomponent adsorption of Cd, Cr, Cu, Pb and Zn onto date palm pits based granular activated carbon (GAC) augmented with highly active natural clay at different proportion was investigated. The effects of the initial pH and the adsorbents mixed ratio on the removal selectivity sequence of the metals evaluated. Batch adsorption experiments were undertaken at initial pH 2, 6 and 12. At initial pH 2, both the percent removal and the metals adsorptive capacity decreased with increasing GAC to clay ratio (from 0 to 1) with the percentage removal of Cd, Zn and Cr ions dropping from 68, 81, 100% to 43, 57 and 70%, respectively. At both pH 6 and 12, the percentage removals and adsorption capacities of all the heavy metal ions are higher than at pH 2. Selectivity sequences for pH 2, 6 and 12 followed the order Pb > Cr > Cu > Zn > Cd; Pb > Cr > Cu > Cd> Zn and Cd> Cr> Cu > Pb > Zn, respectively. The adsorption trends were analyzed in relation to point of zero charge and xi-potential and the metals ions speciation at different pH. These results will help better understand the feasibility of augmenting GAC with natural clay minerals during fixed bed column test which is more beneficial for practical industrial applications.
机译:研究了CD,Cr,Cu,Pb和Zn的多组分吸附于基于棕榈坑的颗粒活性炭(GAC)以不同比例的高活性天然粘土增强。初始pH和吸附剂混合比对所评估的金属的去除选择性序列的影响。在初始pH 2,6和12处进行批量吸附实验。在初始pH 2时,除去百分比和金属吸附能力随着GAC的增加而降低,粘土比(从0到1)增加CD,Zn和Cr离子分别从68,81,100%到43,57和70%下降。在pH 6和12中,所有重金属离子的百分比除去和吸附容量高于pH2。pH 2,6和12的选择性序列,然后是阶Pb> Cr> Cu> Zn> Cd; Pb> Cr> Cd> Cd> Zn和Cd> Cr> Cu> Pb> Zn。在不同pH下的零电荷和Xi电位点和金属离子形态的点分析吸附趋势。这些结果将在固定床柱试验期间,更好地了解增强GAC与天然粘土矿物的可行性,这对实际工业应用更有利。

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