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Adsorption Isotherms and Kinetic Studies of Congo-Red Removal from Waste Water Using Activated Carbon Prepared from Jujube Seed

机译:枣种子制备的活性炭吸附等温线及去除刚果红的动力学研究

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In this study, adsorption of Congo red dye onto activated carbon prepared from Jujube (Ziziphus Mauritiania ) seeds with phosphoric acid as the activating agent was investigated. Batch adsorption studies were carried out to study the influence of contact time, adsorbent dosage and initial dye concentration on the adsorption. The data was analysed using pseudo-first order and pseudo-second order kinetic models. The pseudo-second order kinetic model was found to describe the adsorption more effectively with a perfect correlation coefficient of unity. The rate constant, K was obtained as 0.182 (g/mg min) and the calculated q_(e) (9.81) is very close to the experimental value (9.78). A high correlation coefficient obtained when the data was analysed with the intraparticle diffusion rate equation, revealed the presence of intraparticle diffusion in the adsorption process even though it is not the sole controlling step as shown by the value of the intercept (C ≠ 0). Isotherm studies showed that there is high correlation in each case when the data was modelled with Langmuir, Freundlich, Temkin and Dubinin-Radushkevic isotherm models but the best fit was obtained with the Freundlich model with R ~(2) = 0.9991, adsorption capacity, K_(F) = 19.73 (mg/g)(mg/L)~(1/n ) and n = 1.563 indicating the adsorption is favourable and occurs on a heterogeneous surface by multilayer. The study showed that activated carbon from jujube seeds is an effective adsorbent for the removal of Congo red dye from solution.
机译:在这项研究中,研究了刚果红染料在以磷酸为活化剂的枣(Ziziphus Mauritiania)种子制得的活性炭上的吸附。进行了批量吸附研究,以研究接触时间,吸附剂用量和初始染料浓度对吸附的影响。使用伪一级和伪二级动力学模型分析数据。发现伪二级动力学模型可以更有效地描述吸附,并且具有完美的相关系数1。获得的速率常数i K为0.182(g / mg min),并且计算的i q_(e)(9.81)非常接近实验值(9.78)。当使用颗粒内扩散速率方程分析数据时获得的高相关系数表明,吸附过程中存在颗粒内扩散,尽管这不是截距值(iC≠ 0)。等温线研究表明,当使用Langmuir,Freundlich,Temkin和Dubinin-Radushkevic等温线模型对数据进行建模时,每种情况下都具有高度相关性,但是使用 R〜(2)= 0.9991的Freundlich模型获得了最佳拟合,吸附容量,K_(F)= 19.73(mg / g)(mg / L)〜(1 / n),n = 1.563,表明吸附是有利的,并且通过多层。研究表明,枣种子中的活性炭是从溶液中去除刚果红染料的有效吸附剂。

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