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Adsorption of phenol onto garlic peel: optimization, kinetics, isotherm, and thermodynamic studies

机译:大蒜皮上苯酚的吸附:优化,动力学,等温线和热力学研究

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In the present study, optimization of phenol adsorption onto garlic peel ( GP) was conducted with process parameters such as initial pH, adsorbent dosage, agitation speed, and contact time. The percentage removal of phenol was optimized based on these process parameters. Response surface methodology was used for optimization as it has many advantages over classical optimization methods. A Box-Behnken experimental design was employed. The optimum conditions for maximum removal of phenol from an aqueous solution of 50 mg L-1 were found as follows: pH: 2, adsorbent dosage: 2.1 g L-1, contact time: 7 h, and agitation speed: 135 rpm. At these optimized conditions, batch adsorption experiments were conducted to study the effects of initial concentration and temperature on phenol removal. Thermodynamic parameters such as Delta G degrees; Delta H degrees and Delta S degrees were also evaluated. From the results, the sorption process was found to be spontaneous and exothermic. The equilibrium experimental data were analyzed with several isotherm models. The adsorption kinetics for phenol removal by GP follows the pseudo-second- order kinetic model. The results from the study demonstrated that more than 80% phenol removal is possible at the above-mentioned optimum conditions.
机译:在本研究中,利用初始pH,吸附剂用量,搅拌速度和接触时间等工艺参数对酚对大蒜皮(GP)的吸附进行了优化。基于这些工艺参数优化了苯酚的去除百分比。响应面方法被用于优化,因为它比传统的优化方法有很多优势。采用了Box-Behnken实验设计。发现从50 mg L-1的水溶液中最大程度去除苯酚的最佳条件如下:pH:2,吸附剂量:2.1 g L-1,接触时间:7 h,搅拌速度:135 rpm。在这些优化条件下,进行了批量吸附实验,以研究初始浓度和温度对苯酚去除的影响。热力学参数,例如Delta G度;还评估了ΔH度和ΔS度。根据结果​​,发现吸附过程是自发的并且放热的。用几种等温线模型分析了平衡实验数据。 GP去除苯酚的吸附动力学遵循拟二级动力学模型。研究结果表明,在上述最佳条件下,苯酚的去除率可达到80%以上。

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