孟晓荣

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教育背景: 1.1983-1987年:毕业于西北师范大学化学系,专业:化学; 2.1998-2001年:毕业于西北师范大学化学与化工学院,专业:分析化学; 3.2004-2008年:毕业于西安建筑科技大学环境学院,专业:环境科学。 工作经历: 1.1987-2002,担任酒泉教育学院生化系化学专业教师;系主任 2.2002至今,担任西安建筑科技大学理...

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Transport of phenol through polymer inclusion membrane with N,N-di (1-methylheptyl) acetamide as carriers from aqueous solution

发布时间:2024-08-09  点击次数:

所属单位:化学与化工学院

发表刊物:Journal of Membrane Science

关键字:中文关键字:聚合物包容膜;苯酚,N503,热力学;传质动力学,英文关键字:Polymer inclusion membrane;Phenol;N503;Thermodynam

摘要:The polymer inclusion membranes (PIMs) containing polyvinyl chloride (PVC) as polymer matrix and N,N-di(1-methylheptyl) acetamide (N503) as a specific carrier were prepared by solvent evaporation. Microstructure and mechanical properties of PIMs were characterized by scanning electron microscope (SEM) and tension tester, respectively. The prepared PIMs were used to investigate the facilitated transport of phenol from model solution. The mass transfer dynamics and the transmission thermodynamics of transport process were investigated. Meanwhile, the effects of carrier content in membrane and solution environment on the transport performance of PIMs and its stability were also researched. The results showed that the content of carrier in membrane had a significant impact on the microstructure and mechanical property of PIMs. The transport of phenol was in line with the first order kinetics equation. The PIM presented an optimal transport performance and a certain degree of stability when the carrier content in membrane was 68.8%, feed solution pH was 2 and sodium hydroxide concentration of strip solution was 0.1 mol/L. The initial flux of the PIM reached maximum 25.0 mg·m-2·s-1 when phenol initial concentration was 8000 mg/L in feed solution. The thermodynamic analysis indicated that the transport of phenol through PIMs in the range of 0-45℃ was the diffusion-controlled process.

备注:SCI

合写作者:Chen’guangGao,LeiWang,XudongWang,WeitingTan

第一作者:孟晓荣

论文类型:期刊论文

卷号:卷:493

期号:期:

页面范围:页:615–621

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发表时间:2015-05-01

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