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首页> 外文期刊>Journal of Dispersion Science and Technology >Adsorption of Methyl Violet Dye, A Textile Industry Effluent onto Montmorillonite-Batch Study
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Adsorption of Methyl Violet Dye, A Textile Industry Effluent onto Montmorillonite-Batch Study

机译:蒙脱土批处理研究纺织工业废水甲基紫染料的吸附

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In this study, methyl violet (MV) dye adsorption from synthetically prepared solutions onto montmorillonite was investigated. Experimental parameters were selected as stirring speed, adsorbent dosage, initial dyestuff concentration, initial solution pH, ionic strength, and temperature. It was determined that adsorption rate increased with increased stirring speed, initial dye concentration, solution pH, ionic strength, and temperature, but decreased with increased adsorbent dosage. The experimental data were analyzed by Langmuir, Freundlich, Temkin, and Dubinin–Radushkevich isotherms, and it was found that the isotherm data were reasonably correlated by Langmuir isotherm. Maximum adsorption capacity of montmorillonite for MV dye was calculated as 230.04 mg g~(-1). Pseudo-first-order, pseudo-second-order, Elovich, and intraparticle particle diffusion models were used to fit the experimental data. Pseudo-second-order rate equation provided realistic description of adsorption kinetics. Thermodynamic parameters were calculated as 62.14 kJ mol~(-1), 59.55 kJ mol~(-1), 51.98 kJ mol~(-1), and 0.0242 kJ mol~(-1)K~(-1) for Ea, ?H※, ?G※, and ?S※ at 293 K, respectively. The value of the calculated parameters indicated that the physical adsorption of MV on the clay was dominant and the adsorption process was also endothermic. The positive values of ?S° suggest the increased randomness. The positive ?G° value indicated the un-spontaneous nature of the adsorption model.
机译:在这项研究中,研究了甲基紫(MV)染料从合成溶液中吸附到蒙脱石上的过程。选择实验参数作为搅拌速度,吸附剂剂量,初始染料浓度,初始溶液pH,离子强度和温度。已经确定,随着搅拌速度,初始染料浓度,溶液pH,离子强度和温度的增加,吸附速率增加,但随着吸附剂剂量的增加,吸附速率降低。用Langmuir,Freundlich,Temkin和Dubinin–Radushkevich等温线分析了实验数据,发现等温线数据与Langmuir等温线合理相关。计算得到蒙脱石对MV染料的最大吸附量为230.04 mg g〜(-1)。伪一阶,伪二阶,Elovich和粒子内粒子扩散模型用于拟合实验数据。伪二级速率方程提供了吸附动力学的现实描述。计算得出Ea的热力学参数为62.14 kJ mol〜(-1),59.55 kJ mol〜(-1),51.98 kJ mol〜(-1)和0.0242 kJ mol〜(-1)K〜(-1)。 ?H※,?G※和?S※分别为293K。计算的参数值表明,MV在粘土上的物理吸附占主导地位,并且吸附过程也是吸热的。 ΔS°的正值表明随机性增加。 ΔG°为正值表示吸附模型的自发性。

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