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Removal of methylene blue from aqueous solution by walnut carbon: optimization using response surface methodology

机译:核桃碳去除水溶液中的亚甲蓝:使用响应面方法进行优化

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In this study, carbon was easily made from walnut wood as a low-cost and non-toxic natural adsorbent. It was used to remove methylene blue rapidly from aqueous solutions. This adsorbent was re-used after heating. Boehm titration method, BET surface area measurement, FTIR, and pH determination at zero point of charge (pH(ZPC)) were used to characterize this adsorbent. Response surface methodology was used to reduce the number of experiments and to optimize the experimental factors such as pH of solution, contact time, initial dye concentration, and adsorbent dosage. The optimal conditions for the dye removal were found to be 10, 2.0min, 9.00mg/L, and 0.250g for pH, contact time, initial dye concentration, and adsorbent dosage, respectively. The rapid adsorption of the MB dye is an advantage of this adsorbent. Various isotherm models were used to fit the experimental equilibrium data. The results showed the suitability and applicability of Langmuir model. Kinetic models such as pseudo-first-order, pseudo-second-order, Elovich, and intraparticle diffusion models indicated that the second-order equation model controls the kinetic of the adsorption process.
机译:在这项研究中,碳很容易用核桃木作为低成本和无毒的天然吸附剂制成。它用于从水溶液中快速去除亚甲蓝。加热后,该吸附剂重新使用。 Boehm滴定法,BET表面积测量,FTIR和零电荷点(pH(ZPC))的pH测定被用来表征这种吸附剂。响应面法用于减少实验次数并优化实验因素,例如溶液的pH,接触时间,初始染料浓度和吸附剂用量。对于pH,接触时间,初始染料浓度和吸附剂剂量,发现去除染料的最佳条件分别为10、2.0min,9.00mg / L和0.250g。 MB染料的快速吸附是该吸附剂的优势。使用各种等温线模型拟合实验平衡数据。结果表明Langmuir模型的适用性和适用性。动力学模型,例如伪一级,伪二级,Elovich和粒子内扩散模型表明,二级方程模型控制着吸附过程的动力学。

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