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首页> 外文期刊>Journal of Chemical and Engineering Data: the ACS Journal for Data >Isotherm, Thermodynamics, Desorption, and Disposal Study for the Adsorption of Catechol and Resorcinol onto Granular Activated Carbon
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Isotherm, Thermodynamics, Desorption, and Disposal Study for the Adsorption of Catechol and Resorcinol onto Granular Activated Carbon

机译:颗粒活性炭吸附邻苯二酚和间苯二酚的等温,热力学,解吸和处理研究

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The present paper reports isotherm, thermodynamic, and disposal studies for the adsorption/desorption of catechol (C) and resorcinol (R) from aqueous solution onto/from granular activated carbon (GAC). Isotherm data were generated for C and R solutions having initial concentrations of C and R in the range of (0,18 to 9.08) mmol·L~(-1) for the GAC dosage of 10 g·L~(-1)at temperatures of (288, 303, and 318) K. The adsorption of C and R onto GAC was favorably influenced by an increase in temperature. Equilibrium data were well-represented by the Tempkin isotherm model. Values of the change in entropy (ΔS_0), heat of adsorption (ΔH_0), and Gibbs energy (ΔG_0) were determined. The desorption of C and R from GAC was studied by various solvents and a thermal desorption method NaOH was found to be a better eluant for the desorption of C and R with a maximum desorption efficiency of 10.1 % and 11.4 %, respectively. Thermal desorption at 623 K was found to be better as compared to solvent desorption. GAC worked well for at least five adsorption-desorption cycles, with a continuous decrease in adsorption efficiency after each thermal desorption. Owing to its heating value, spent GAC can be used as a cofuel for the production of heat in boiler furnaces.
机译:本文报道了等温,热力学和处置研究,用于研究儿茶酚(C)和间苯二酚(R)从水溶液到颗粒活性炭(GAC)的吸附/解吸。当GAC剂量为10 g·L〜(-1)时,初始浓度为(0,18至9.08)mmol·L〜(-1)的C和R溶液产生的等温数据。温度(288、303和318)K。温度升高有利于C和R在GAC上的吸附。 Tempkin等温模型很好地表示了平衡数据。确定熵(ΔS_0),吸附热(ΔH_0)和吉布斯能量(ΔG_0)的变化值。用各种溶剂研究了GAC中C和R的解吸,发现热解吸方法NaOH是C和R解吸的较好洗脱剂,最大解吸效率分别为10.1%和11.4%。发现与溶剂解吸相比,在623 K下的热解吸效果更好。 GAC至少在五个吸附-解吸循环中均表现良好,每次热解吸后吸附效率不断降低。由于其发热量,用过的GAC可以用作锅炉锅炉产生热量的辅助燃料。

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