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烷基膦酸载体液膜中Cd(II)的传输 被引量:2
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作者 姚秉华 卞文娟 梁延荣 《中国环境科学》 EI CAS CSSCI CSCD 北大核心 2001年第6期511-514,共4页
采用内耦合大块液膜分离技术,通过考察料液相pH值、温度、载体浓度以及解析相组成对Cd(Ⅱ)迁移速率的影响,研究了以烷基膦酸为流动载体的液膜中镉的迁移规律,并建立了渗透系数与pH值、温度以及载体浓度之间的关系方程。结果表明,Cd... 采用内耦合大块液膜分离技术,通过考察料液相pH值、温度、载体浓度以及解析相组成对Cd(Ⅱ)迁移速率的影响,研究了以烷基膦酸为流动载体的液膜中镉的迁移规律,并建立了渗透系数与pH值、温度以及载体浓度之间的关系方程。结果表明,Cd(Ⅱ)以CdR2·2HR(Kex值为3.58×10^6)配合物形式在液膜中传输,增加载体浓度或升高温度,迁移速率明显升高,最佳传质条件为料液相pH值4.5-5.1、载体浓度5.0%-7.5%、温度298-308K。 展开更多
关键词 分离 支撑体液 烷基膦酸 载体液膜 重金属传输 含镉废水 废水处理
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Permeability and Selectivity of Sulfur Dioxide and Carbon Dioxide in Supported Ionic Liquid Membranes 被引量:9
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作者 江滢滢 吴有庭 +3 位作者 王文婷 李磊 周政 张志炳 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2009年第4期594-601,共8页
Permeabilities and selectivities of gases such as carbon dioxide (CO2), sulfur dioxide (SO2), nitrogen (N2) and methane (CH4) in six imidazolium-based ionic liquids ([emim][BF4], [bmim][BF4], [bmim][PF6], [ba... Permeabilities and selectivities of gases such as carbon dioxide (CO2), sulfur dioxide (SO2), nitrogen (N2) and methane (CH4) in six imidazolium-based ionic liquids ([emim][BF4], [bmim][BF4], [bmim][PF6], [banim][BF4], [bmim][Tf2N] and [emim][CF3SO3]) supported on polyethersulfone microfiltration membranes are investigated in a single gas feed system using nitrogen as the environment and reference component at temperature from 25 to 45℃ and pressure of N2 from 100 to 400 kPa. It is found that SO2 has the highest permeability in the tested supported ionic liquid membranes, being an order of magnitude higher than that of CO2, and about 2 to 3 orders of magnitude larger than those of N2 and CH4. The observed selectivity of SO2 over the two ordinary gas components is also striking. It is shown experimentally that the dissolution and transport of gas components in the supported ionic liquid membranes, as well as the nature of ionic liquids play important roles in the gas permeation. A nonlinear increase of permeation rate with temperature and operation pressure is also observed for all sample gases. By considering the factors that influence the permeabilities and selectivities of CO2 and SO2, it is expected to develop an optimal supported ionic liquid membrane technology for the isolation of acidic gases in the near future. 展开更多
关键词 PERMEATION gas separation ionic liquid supported ionic liquid membrane acidic gas
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