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改性粉煤灰合成沸石对甲基橙的吸附动力学
引用本文:高立祥, 边祥成, 戴浩, 武荣兰. 改性粉煤灰合成沸石对甲基橙的吸附动力学[J]. 环境工程学报, 2015, 9(4): 1709-1714. doi: 10.12030/j.cjee.20150431
作者姓名:高立祥  边祥成  戴浩  武荣兰
作者单位:1.新疆大学 石油天然气精细化工教育部和自治区重点实验室, 乌鲁木齐 830046; 2.甘肃银光聚银化工有限公司, 白银 730900
基金项目:国家自然科学基金资助项目(51063007) 石油天然气精细化工自治区重点实验室开放课题项目(XJDX-0908-2013-6)。
摘    要:
以粉煤灰(FA)为原料,采用水热晶化一步法制备了NaP1型沸石(ZFA),对合成产物的结构进行了表征,并采用阳离子表面活性剂十六烷基三甲基溴化铵(CTAB)对其进行改性。通过静态吸附实验,研究了改性后NaP1型沸石(MZFA)对水溶液中甲基橙的吸附特性,从动力学角度探讨了吸附机理。结果表明,在所研究的浓度条件下,改性NaP1型沸石对甲基橙的吸附符合Langmuir等温吸附方程,在25℃时,静态饱和吸附量(Qm)为64.76 mg/g。动力学分析表明,改性NaP1型沸石对溶液中甲基橙的吸附符合准二级动力学模型。

关 键 词:粉煤灰   NaP1型沸石   甲基橙   改性   吸附动力学
收稿时间:2014-11-28

Adsorption kinetics of methyl orange on modified zeolite synthesized from fly ash
Gao Lixiang, Bian Xiangcheng, Dai Hao, Wu Ronglan. Adsorption kinetics of methyl orange on modified zeolite synthesized from fly ash[J]. Chinese Journal of Environmental Engineering, 2015, 9(4): 1709-1714. doi: 10.12030/j.cjee.20150431
Authors:Gao Lixiang  Bian Xiangcheng  Dai Hao  Wu Ronglan
Affiliation:1.Key Laboratory of Oil & Gas Fine Chemicals, Ministry of Education & Xinjiang Uygur Autonomous Region, Xinjiang University, Urumqi 830046, China,; 2.Gansu Yinguang Juyin Chemical Co, LTD.Baiyin 730900, China
Abstract:
NaP1 zeolite(ZFA) was systhesised by one-step hydrothermal crystallization method using Fly ash(FA) as raw material.The prepared products were characterized and modified by cationic surfactant cetyltrimethylammonium bromide ammonium (CTAB).The adsorption properties of modified NaP1 zeolite(MZFA) to methyl orange in aqueous solution were studied through static adsorption experiments and the adsorption mechanism was also discussed from the point of kinetic.The equilibrium adsorption data were fitted to Langmuir isotherm and the greatest adsorption capacity of methyl orange was 64.76 mg/g at 25℃ under the given concentration.Kinetic analysis showed that the adsorption process of modified NaP1 zeolite to methyl orange in aqueous solution followed the pseudo-second-order kinetic model.
Keywords:fly ash  NaP1 zeolite  methyl orange  modified  adsorption kinetics
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