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Phenol adsorption onto coffee waste - granular activated carbon: kinetics and equilibrium studies in aqueous solutions

机译:苯酚吸附到咖啡废料上-颗粒状活性炭:水溶液中的动力学和平衡研究

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In this research, the production of granular activated carbon from coffee waste (CW) by chemical activation with zinc chloride was studied by using a 23 factorial design with the three responses (surface area, yield, and hardness) and studying three factors (the activation temperature, activation time, and impregnation ratio). The findings expose that after the experimental design, the highest response values were achieved at an activation temperature of 600 degrees C, an activation time of 40 min, and an impregnation ratio of 1.5 g ZnCl2 g(-1) CW. At these conditions, the experimental tests produced a surface area of 1,279 m(2) g(-1). Batch studies of phenol adsorption onto coffee waste-activated carbon (CW-GAC) were performed at different solution pH, stirring speeds, and initial phenol concentrations. The maximum phenol adsorption capacity onto CW-GAC was 160.52 mg g(-1) at pH 7. The adsorption kinetics was affected by stirring speed, the required time to achieve equilibrium decreased from 150 to 120 min when stirring speed varied from 200 to 400 min(-1). Film and intraparticle diffusion mechanisms controlled the adsorption of phenol onto CW-GAC. Finally, the porous material developed in this research is capable of sequestering phenol from aqueous solutions to a higher extent than similar lignocellulosic-based activated carbons.
机译:在这项研究中,通过使用具有三个响应(表面积,产率和硬度)的23因子设计并研究了三个因素(活化),研究了通过氯化锌化学活化从咖啡废料(CW)中生产粒状活性炭的方法。温度,活化时间和浸渍率)。研究结果表明,经过实验设计,在600℃的活化温度,40分钟的活化时间和1.5 g ZnCl2 g(-1)CW的浸渍比下实现了最高响应值。在这些条件下,实验测试产生的表面积为1,279 m(2)g(-1)。在不同的溶液pH,搅拌速度和初始苯酚浓度下,对苯酚吸附到咖啡废料活性炭(CW-GAC)上的批次进行了研究。 pH值为7时,苯酚在CW-GAC上的最大吸附量为160.52 mg g(-1)。搅拌速度影响吸附动力学,当搅拌速度从200变为400时,达到平衡所需的时间从150减少至120分钟。 min(-1)。薄膜和颗粒内扩散机制控制了苯酚在CW-GAC上的吸附。最后,与类似的木质纤维素基活性炭相比,本研究开发的多孔材料能够从水溶液中螯合苯酚。

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