首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >Adsorptive Removal of Phenol by Coffee Residue Activated Carbon and Commercial Activated Carbon: Equilibrium, Kinetics, and Thermodynamics
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Adsorptive Removal of Phenol by Coffee Residue Activated Carbon and Commercial Activated Carbon: Equilibrium, Kinetics, and Thermodynamics

机译:咖啡残渣活性炭和商业活性炭对苯酚的吸附去除:平衡,动力学和热力学

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摘要

Carbons were prepared from coffee residue using chemical activation with ZnCl2. Among five carbons prepared by varying the activating agent ratio (mass of ZnCl2/mass of coffee residue) from 0 % to 100 %, the one with an activation ratio equal to 25 % (AC 25 %) was the most effective sorbent showing the maximum phenol uptake (68 %). Consequently, all the adsorption experiments were achieved with the carbon having an activation ratio equal to 25 %. A comparative study of prepared activated carbon (AC 25 %) and a commercial activated carbon (CAC) was undertaken to determine their capacities for phenol removal. For each adsorbent-phenol system, a pseudosecond-order kinetic model described the adsorption kinetics accurately at all concentrations and temperatures for the two systems. The thermodynamics of the phenol-CAC and phenol-AC 25 % systems indicate an exothermic process. Phenol adsorption isotherms onto the prepared and commercial activated carbons have been studied. They display two plateaus. The degree of coverage of the surface of two carbons by the phenol molecules was calculated, and it was.revealed that the second plateau, appearing at high concentrations, is assigned to the desorption of wafer molecules fixed on the surface oxygen groups of the activated carbons and the occupation of these sites by phenol molecules in excess in the treated solutions. The Langmuir, Freundlich, and Elovich models were tested.
机译:使用ZnCl2进行化学活化,从咖啡渣中制得碳。在通过将活化剂比率(ZnCl2的质量/咖啡渣的质量)从0%更改为100%制备的五个碳中,活化率等于25%(AC 25%)的一个是最有效的吸附剂,其吸附量最大。苯酚吸收(68%)。因此,所有的吸附实验都是用活化率等于25%的碳完成的。对制备的活性炭(AC 25%)和商用活性炭(CAC)进行了比较研究,以确定它们的去除苯酚的能力。对于每个吸附剂-苯酚系统,一个伪二级动力学模型准确地描述了两个系统在所有浓度和温度下的吸附动力学。苯酚-CAC和苯酚-AC 25%系统的热力学表明有放热过程。已经研究了苯酚在制备的和商用的活性炭上的吸附等温线。它们显示两个高原。计算了酚分子对两个碳表面的覆盖程度,发现第二个平台以高浓度出现,这是由于固定在活性碳表面氧基团上的晶片分子解吸引起的。并且在处理过的溶液中过量的苯酚分子占据了这些位点。对Langmuir,Freundlich和Elovich模型进行了测试。

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