首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Comparative biosorption of chromium (VI) using chemically modified date pits (CM-DP) and olive stone (CM-OS): Kinetics, isotherms and influence of co-existing ions
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Comparative biosorption of chromium (VI) using chemically modified date pits (CM-DP) and olive stone (CM-OS): Kinetics, isotherms and influence of co-existing ions

机译:铬(VI)的比较生物吸收使用化学修饰的日期凹坑(CM-DP)和橄榄石(CM-OS):动力学,等温线和共存离子的影响

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Chemically modified date pit (CM-DP) and olive stone (CM-OS) were studied for their biosorption capacity for hexavalent chromium (Cr(VI)) removal in the aqueous phase. The effect of changing the process conditions, such as the initial Cr (VI) concentration, pH, biosorbent dosage, ionic strength, presence of other ions and temperature were investigated. It showed that at pH = 2, biosorbent dosage >4 g/L and a low ionic strength, both biosorbents showed best biosorption capacity of the Cr(VI) removal. Various isotherm models were applied to fit the experimental data and the Freundlich isotherm model was the best fitting isotherm model for the biosorption experimental data of both biosorbents. The maximum biosorption capacities of CM-DP and CM-OS were found to be 82.63 and 53.31 mg/g respectively, which is comparable to other materials. In the kinetic study, the pseudo second order model can best describe the biosorption process of both biosorbents and the intraparticle diffusion was not the rate-limiting step indicating the contribution of film diffusion in the Cr(VI) removal processes. (C) 2020 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:研究了化学改性的日期坑(CM-DP)和橄榄石(CM-OS),用于其在水相中除去六价铬的生物吸附能力(Cr(vi))。研究了改变过程条件的效果,例如初始Cr(VI)浓度,pH,生物吸附剂剂量,离子强度,其他离子和温度的存在。它表明,在pH = 2,生物吸附剂量> 4g / L和低离子强度下,两种生物吸水剂显示出Cr(VI)的最佳生物吸附能力。应用各种等温模型以适应实验数据,并且Freundlich等温模型是Biosorpents的生物吸附实验数据的最佳拟合等温模型。发现CM-DP和CM-OS的最大生物吸收能力分别为82.63和53.31mg / g,其与其他材料相当。在动力学研究中,伪二阶模型可以最能描述生物吸水性的生物吸附过程,并且粒前扩散不是表示CR(VI)去除方法中薄膜扩散贡献的速率限制步骤。 (c)2020化学工程师机构。 elsevier b.v出版。保留所有权利。

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