胶束模板MCM-41对水的除氟:吸附和RSM研究

I. Kaur, Abhishek Gupta, B. Singh, Rajeev Kumar, J. Chawla
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引用次数: 4

摘要

使用经济方法对水进行除氟对于解决饮用水中氟化物含量过高(1.5毫克/升)的问题非常重要,这对人体健康非常有害。本研究合成了胶束模板介孔材料MCM-41,并对其作为吸附剂对氟离子的吸附进行了探索,并通过响应面法(RSM)的Box-Behnken设计(BBD)优化了吸附过程。所得数据最符合Langmuir吸附等温线,表明胶束模板的MCM-41表面存在氟离子的单层吸附;Langmuir最大吸附量为52.91 mg/g。通过BBD进行优化涉及以氟的去除率百分比为响应变量,逼近选定的自变量输入,即初始氟浓度、溶液pH和吸附剂剂量。建议采用二次模型预测氟离子去除率。根据预测,在初始浓度为21 ppm, pH为5.4 ~ 5.8,吸附剂剂量为1 ~ 1.3 g/L时,去除率可达82%。实验结果与模型预测值吻合较好。doi: 10.2166/aqua.2019.013 om https://iwaponline.com/aqua/article-pdf/68/4/282/569852/jws0680282.pdf er 2019 Inderpreet Kaur(通讯作者)Abhishek Gupta化学系,高级研究中心,Guru Nanak Dev大学,印度旁遮普省阿姆利则143005inderpreet11@yahoo.co.in印度旁遮普邦阿姆利则市古鲁纳纳克·德夫大学Bhupinder Pal Singh it解决方案中心,印度旁遮普143001 Rajeev Kumar Jyoti Chawla Manav Rachna国际研究所,哈里亚纳邦法里达巴德121004
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Defluoridation of water using micelle templated MCM-41: adsorption and RSM studies
Defluoridation of water using an economic method is important to combat the issue of excessive fluoride content (>1.5 mg/L), which is very detrimental to human health, in drinking water. In the present work, micelle templated mesoporous material, MCM-41, was synthesized and explored as an adsorbent for adsorption of fluoride ions from aqueous media and the process of adsorption was optimized through three levels of Box–Behnken design (BBD) of response surface methodology (RSM). The data obtained were found to be best fitted for Langmuir adsorption isotherm suggesting monolayer adsorption of fluoride ions on the surface of micelle templated MCM-41; Langmuir maximum adsorption capacity was found to be 52.91 mg/g. Optimization through BBD involves approximation of selected input of independent variables, i.e., initial fluoride concentration, solution pH and adsorbent dose with percentage removal of fluoride as the response variable. The quadratic model was suggested to predict the percentage removal of fluoride ions. As per the prediction, maximum removal of 82% can be achieved at initial concentration up to 21 ppm in pH range of 5.4–5.8 and adsorbent dose of 1–1.3 g/L. Experimental and model predicted values of adsorption were found to be in good agreement with each other. doi: 10.2166/aqua.2019.013 om https://iwaponline.com/aqua/article-pdf/68/4/282/569852/jws0680282.pdf er 2019 Inderpreet Kaur (corresponding author) Abhishek Gupta Department of Chemistry, Centre for Advanced Studies, Guru Nanak Dev University, Amritsar, Punjab 143005, India E-mail: inderpreet11@yahoo.co.in Bhupinder Pal Singh Centre for I.T. Solutions, Guru Nanak Dev University, Amritsar Punjab 143001, India Rajeev Kumar Jyoti Chawla Manav Rachna International Institute of Research and Studies, Faridabad, Haryana 121004, India
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