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Thermodynamic spectral and kinetic analysis of the removal of Cu(Ⅱ) from aqueous solution by sodium carbonate treated rice husk

机译:碳酸钠处理的稻壳去除水溶液中Cu(Ⅱ)的热力学光谱和动力学分析。

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摘要

A new adsorbent for removing copper ions from aqueous solutions has been developed and characterized. The present study deals with the sorption of Cu(II) from aqueous solution on chemically pretreated sodium carbonate-treated rice husk (SCRH). The physico-chemical characteristics of rice husks were investigated to analyze their suitability to adsorb Cu(II) ions from water and wastewater. The raw rice husk (RRH), SCRH and Cu(II) adsorbed rice husk were analyzed by SEM-EDAX analysis. FTIR spectroscopy was also applied to identify functional groups, capable of adsorbing metal ions. Batch kinetic studies were conducted for the adsorption of Cu(II) on SCRH. It has been observed that 92.9-96.0% removal of Cu(II) is achieved at 4.8 mg of Cu(II)/g of adsorbent, adsorbent dose of 10 g L-1 and initial Cu(II) concentration of 10 mg L-1 in a temperature range of 15-50 degrees C. It was observed that the adsorption of Cu(II) on SCRH followed pseudo second-order kinetic and time to achieve equilibrium was found to be 60 min. The maximum uptake (97%) of Cu (II) was observed at pH 6. In this paper, an attempt has also been made to develop simple and readily understandable thermodynamic parameters related to sorption process at the equilibrium for understanding the adsorption mechanism. The Gibbs free energy Delta G degrees values for the adsorption processes of Cu(II) at 15, 30, 40 and 50 degrees C were calculated as -6.16, -6.84, -8.01 and -8.53 kJ mol(-1), respectively. The negative value of Delta G degrees indicates spontaneity of adsorption. The values of Delta H degrees and Delta S degrees for Cu(II) adsorption were calculated as 14.37 kJ mol(-1) and 70.92 J K-1 mol(-1), respectively. The activation energy for the adsorption of Cu(II) was found to be 9 kJ mol(-1) which is a characteristic for diffusion limited processes.
机译:已经开发并表征了用于从水溶液中去除铜离子的新型吸附剂。本研究涉及在化学预处理的碳酸钠处理的稻壳(SCRH)上从水溶液中吸附Cu(II)。研究了稻壳的理化特性,以分析它们对水和废水中Cu(II)离子的吸附能力。通过SEM-EDAX分析法分析了生稻壳(RRH),SCRH和Cu(II)吸附的稻壳。 FTIR光谱学还用于鉴定能够吸附金属离子的官能团。进行了批动力学研究,研究了SCRH上Cu(II)的吸附。已经观察到,在4.8 mg Cu(II)/ g吸附剂,10 g L-1的吸附剂剂量和10 mg L-的初始Cu(II)浓度下,可去除92.9-96.0%的Cu(II)图1在15-50℃的温度范围内。观察到Cu(II)在SCRH上的吸附遵循伪二级动力学,并且达到平衡的时间为60分钟。在pH值为6时观察到最大的Cu(II)吸收(97%)。在本文中,为了了解吸附机理,还尝试开发与平衡过程中的吸附过程相关的简单易懂的热力学参数。计算得出在15、30、40和50摄氏度下Cu(II)吸附过程的吉布斯自由能Delta G度值分别为-6.16,-6.84,-8.01和-8.53 kJ mol(-1)。 ΔG度的负值表示吸附的自发性。 Cu(II)吸附的Delta H度和Delta S度的值分别计算为14.37 kJ mol(-1)和70.92 J K-1 mol(-1)。发现吸附Cu(II)的活化能为9 kJ mol(-1),这是扩散受限过程的特征。

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