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Adsorption and desorption properties of cationic polyethylene film gels to organic anions and their regeneration

机译:阳离子聚乙烯薄膜凝胶对有机阴离子的吸附和解吸性能及其再生

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摘要

An investigation was undertaken on the adsorption and desorption properties of 2-(dimethylamino)ethyl methacrylate grafted polyethylene (PE-g-PDMAEMA) films to anionic dye anions with one to three sulfonic groups in response to PH and temperature changes. The amounts of dye anions adsorbed on the PE-g-PDMAEMA films passed through the maximum values at about PH 3 because of an increase in the protonation of dimethylamino groups caused by a decrease in the PH value. The amounts of adsorbed dye anions decreased below PH 3 because the ionic strength increased with the addition of HCl to adjust the initial PH values of the aqueous dye solutions. The amounts of adsorbed dye anions decreased with an increase in the number of sulfonic groups in the dye molecules at the same PH value because electrostatic repulsion was generated between free sulfonic groups of the dye anions adsorbed onto the PE-g-PDMAEMA films and free dye anions in the medium. A large number of dye anions adsorbed were desorbed from the PE-g-PDMAEMA film with initial PH values above 11.0. The cyclic processes of adsorption at PH 3.0 and desorption at PH 11.0 were repeated without considerable fatigue. The PE-g-PDMAEMA films showed practically regenerative adsorption and desorption behavior in response to the PH changes. In addition, when the dye-anion-adsorbed PE-g-PDMAEMA films were alternately immersed in water at two different temperatures, dye anions were desorbed in water at higher temperatures without any chemical agents because of the deprotonation of dimethylamino groups and thermosensitive contraction of grafted PDMAEMA chains. These results indicate that PE-g-PDMAEMA films can be applied as regenerative ion-exchange membranes for adsorption and desorption processes of anionic compounds in response to the PH and temperature. (c) 2005 Wiley Periodicals, Inc.
机译:研究了2-(二甲基氨基)乙基甲基丙烯酸酯接枝的聚乙烯(PE-g-PDMAEMA)膜对具有1-3个磺酸基的阴离子染料阴离子的吸附和解吸特性,以响应PH和温度变化。吸附在PE-g-PDMAEMA膜上的染料阴离子的量在约PH 3处通过最大值,这是由于由PH值的降低引起的二甲基氨基的质子化的增加。吸附的染料阴离子的量减少到PH 3以下,因为离子强度随着HCl的添加而增加,以调节染料水溶液的初始PH值。在相同PH值下,染料阴离子的吸附量随染料分子中磺酸基数目的增加而减少,这是因为在吸附到PE-g-PDMAEMA膜上的染料阴离子的游离磺酸基与游离染料之间产生了静电排斥阴离子。 PE-g-PDMAEMA膜吸附了许多吸附的染料阴离子,初始​​PH值高于11.0。重复在PH 3.0处吸附和在PH 11.0处解吸的循环过程,而不会产生明显的疲劳。 PE-g-PDMAEMA膜响应PH的变化显示出实际的再生吸附和解吸行为。此外,当将吸附有染料阴离子的PE-g-PDMAEMA膜交替浸没在两个不同温度的水中时,由于二甲基氨基的去质子化和H2O2的热敏收缩,染料阴离子在较高的温度下被脱附而没有任何化学试剂。接枝的PDMAEMA链。这些结果表明,PE-g-PDMAEMA膜可用作再生离子交换膜,用于响应PH和温度对阴离子化合物的吸附和解吸过程。 (c)2005年Wiley Periodicals,Inc.

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