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焦粉基碳吸附材料对铜(Ⅱ)离子吸附特性
引用本文:雒和明,曹国璞,张建强,张徳懿,赵霞,董鹏.焦粉基碳吸附材料对铜(Ⅱ)离子吸附特性[J].应用化学,2010,27(2):211-214.
作者姓名:雒和明  曹国璞  张建强  张徳懿  赵霞  董鹏
作者单位:1. 兰州理工大学石油化工学院,兰州,730050
2. 长庆石油第二采油处巨力工程建设公司,甘肃
基金项目:甘肃省教育厅研究生导师科研项目 
摘    要:采用硝酸预氧化焦粉、氯化锌化学活化法制备了焦粉基碳吸附材料。 考察了焦粉基碳吸附材料对水中铜(Ⅱ)离子的吸附特性。 实验结果表明,焦粉基碳吸附材料吸附平衡时间90 min,该吸附过程符合Langmuir型吸附模型;不同温度下的ΔHθ>0、ΔGθ<0,证实其吸附过程是一个自发吸热过程;ΔSθ>0,表明铜离子在固液界面有序性减小、混乱度增大。 对实验数据进行数学模型拟合,二级相关系数R2=0.999 1,显示吸附过程动力学与二级动力学模型相关性较好。

关 键 词:焦粉基碳吸附材料  铜(Ⅱ)离子  吸附模型  吸附热力学  吸附动力学
收稿时间:2009-01-20
修稿时间:2009-03-16

Adsorption of Copper Ion to Coke-based Material for Carbon Absorption
LUO He-Ming,CAO Guo-Pu,ZHANG Jian-Qiang,ZHANG De-Yi,ZHAO Xia,DONG Peng.Adsorption of Copper Ion to Coke-based Material for Carbon Absorption[J].Chinese Journal of Applied Chemistry,2010,27(2):211-214.
Authors:LUO He-Ming  CAO Guo-Pu  ZHANG Jian-Qiang  ZHANG De-Yi  ZHAO Xia  DONG Peng
Institution:LUO He-Ming a,CAO Guo-Pu b,ZHANG Jian-Qiang a,ZHANG De-Yi a,ZHAO Xia a,DONG Peng a(aSchool of Petrochemical Engineering,Lanzhou University of Technology,Lanzhou 730050,bJuli Construction Company of Second Production Department,Changqing Petroleum,Qingyang)
Abstract:Coke-based carbon absorption material was prepared by nitric acid pre-oxidation of coke powder followed by zinc chloride chemical activation. The absorption characteristics were studied for the coke-based carbon absorbing copper ions in water. The results show that the absorption equilibrium time was 90 min, and the absorption accorded with the Langmuir model. In addition,the results of ΔH~θ>0, ΔG~θ<0 at different temperatures reveal that the adsorption was a spontaneous endothermic process, and that ΔS~θ>0 indicates that the order reduced and the chaos increased for the copper ion adsorption the solid-liquid interface. Finally, the experimental data were fitted to second order kinetics model and the correlation coefficient(R~2) was 0.9991, suggesting that the adsorption followed second order kinetics.
Keywords:coke-based carbon absorption material  copper ion  adsorption model  adsorption thermodynamics  adsorption kinetics
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