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HDTMA改性沸石的制备及吸附废水中对硝基苯酚的性能和动力学
引用本文:郭俊元,王彬.HDTMA改性沸石的制备及吸附废水中对硝基苯酚的性能和动力学[J].环境科学,2016,37(5):1852-1857.
作者姓名:郭俊元  王彬
作者单位:成都信息工程大学资源环境学院, 成都 610225;成都信息工程大学资源环境学院, 成都 610225
基金项目:国家自然科学基金项目(51508043);成都信息工程大学中青年学术带头人科研人才基金项目(J201515)
摘    要:采用十六烷基三甲基溴化铵(HDTMA)对天然沸石进行改性,研究了沸石的改性条件、改性沸石投加量、废水p H值、反应时间等对HDTMA改性沸石去除废水中对硝基苯酚性能的影响,并分析了吸附动力学和吸附等温线.结果表明,改性沸石对废水中对硝基苯酚的吸附效果明显高于天然沸石,当制备改性沸石的HDTMA溶液的质量分数为1.2%,且其p H值为10时,改性沸石对废水中对硝基苯酚的吸附量达到2.53 mg·g~(-1),远高于天然沸石的0.54 mg·g~(-1).吸附实验中,改性沸石投加量8 g·L~(-1),反应时间90 min,p H=6的条件下,HDTMA改性沸石对废水中对硝基苯酚的去除率高达93.9%.吸附动力学和等温线研究表明,一级动力学方程能够更好地拟合沸石吸附对硝基苯酚的过程(R20.90),不同温度条件下Langmuir等温线拟合方程的相关系数均在0.90以上,数据和方程拟合性较好.

关 键 词:对硝基苯酚  十六烷基三甲基溴化铵  改性沸石  吸附动力学  吸附等温线
收稿时间:9/8/2015 12:00:00 AM
修稿时间:2015/12/12 0:00:00

Preparation of HDTMA-modified Zeolite and Its Performance in Nitro-phenol Adsorption from Wastewaters
GUO Jun-yuan and WANG Bin.Preparation of HDTMA-modified Zeolite and Its Performance in Nitro-phenol Adsorption from Wastewaters[J].Chinese Journal of Environmental Science,2016,37(5):1852-1857.
Authors:GUO Jun-yuan and WANG Bin
Institution:College of Resources and Environment, Chengdu University of Information Technology, Chengdu 610225, China;College of Resources and Environment, Chengdu University of Information Technology, Chengdu 610225, China
Abstract:In this study, natural zeolite was modified by HDTMA. Effects of the modified conditions, HDTMA-modified zeolite doses, solution pH values, and reaction time on nitro-phenol removal were investigated, and the adsorption kinetics and isotherms were discussed. Compared with natural zeolite, HDTMA-modified zeolite showed better performance in nitro-phenol removal. An adsorption capacity of 2.53 mg·g-1 was achieved when the concentration of HDTMA solution (pH=10) was 1.2% in preparation of modified zeolite. This adsorption capacity was higher than that obtained by natural zeolite (0.54 mg·g-1). In adsorption tests, when HDTMA-modified zeolite dose was adjusted to 8 g·L-1, the removal efficiency of nitro-phenol reached 93.9% after 90 min reaction, with wastewater pH of 6. Furthermore, the nitro-phenol adsorption process could be well fitted to the pseudo-first-order kinetics model (R2>0.90), whereas the adsorption isotherm results indicated that Langmuir model provided the best fitting for the equilibrium data at different temperatures, with R2 of higher than 0.90.
Keywords:nitro-phenol  HDTMA  modified zeolite  adsorption kinetics  adsorption isotherm
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