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Adsorption of Basic violet 16 from aqueous solutions by waste sugar beet pulp: kinetic, thermodynamic, and equilibrium isotherm studies

机译:甜菜废纸浆从水溶液中吸附碱性紫16的动力学,热力学和平衡等温线研究

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Waste sugar beet pulp has been used as adsorbent for the removal of a hazardous cationic dye, Basic violet 16, from its aqueous solution. Adsorption of the dye was studied as function of time, pH of the solution, dosage of the adsorbent, sieve size of the particles, concentration of the dye, and temperature. The initial pH of the dye solution did not affect the chemistry of the dye molecule and the surface of beet pulp. Langmuir and Freundlich adsorption isotherms were successfully employed, and on the basis of these models, the thermodynamic parameters were evaluated. Adsorption of Basic violet 16 on beet pulp was found to be an exothermic reaction. Time contact studies showed that more than 80% adsorption of the dye is achieved in less than 1?h. Kinetics investigations confirmed both pseudo-first-order and pseudo-second-order behaviors; on the other hand, it shows that the intraparticle diffusion step is not the only rate-controlling step in all concentrations.
机译:甜菜废纸浆已用作吸附剂,用于从其水溶液中除去有害的阳离子染料碱性紫16。根据时间,溶液的pH,吸附剂的用量,颗粒的筛孔尺寸,染料的浓度和温度对染料的吸附进行了研究。染料溶液的初始pH值不影响染料分子和甜菜浆表面的化学性质。成功使用了Langmuir和Freundlich吸附等温线,并在这些模型的基础上评估了热力学参数。发现碱性紫罗兰16在甜菜果肉上的吸附是放热反应。时间接触研究表明,在不到1?h的时间内即可达到80%以上的染料吸附率。动力学研究证实了伪一级和伪二级行为。另一方面,它表明颗粒内扩散步骤并不是所有浓度下唯一的速率控制步骤。

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