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Hexavalent chromium removal from aqueous solution by adsorbents synthesized from groundwater treatment residuals

机译:地下水处理残留物中合成的吸附剂从水溶液中去除六价铬

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In this study, silica sand coated with groundwater treatment residuals was used as adsorbents for the removal of hexavalent chromium from synthetic wastewater. Batch adsorption experiments were conducted to evaluate the effects of initial Cr(VI) concentration, solution pH, adsorbent dosage, solution temperature, contact time, as well as ionic strength on Cr(VI) removal. Results show that low solution pH and high ionic strength improve Cr(VI) adsorption onto the residual coated sand. At pH 4, the highest adsorption capacity was computed at 0.27?mg?g ?1 . The Freundlich isotherm model best described the adsorption process. From 298 to 318?K, the high correlation of the kinetic data with the pseudo-second order model ( R 2 ??0.981) and a highly positive activation energy value (22.7?kJ?mol ?1 ) indicate that chemisorption is the rate-controlling step of the adsorption process.
机译:在这项研究中,将涂有地下水处理残留物的硅砂用作吸附剂,以去除合成废水中的六价铬。进行了批量吸附实验,以评估初始Cr(VI)浓度,溶液pH,吸附剂用量,溶液温度,接触时间以及离子强度对Cr(VI)去除的影响。结果表明,较低的溶液pH和较高的离子强度可提高Cr(VI)吸附在残留覆膜砂上的能力。在pH 4时,最高吸附容量经计算为0.27?mg?g?1。 Freundlich等温模型最能描述吸附过程。从298到318?K,动力学数据与伪二阶模型的高度相关性(R 2?>?0.981)和很高的正活化能值(22.7?kJ?mol?1)表明化学吸附是最大的。吸附过程的速率控制步骤。

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