首页> 外文期刊>Journal of Applied Polymer Science >Adsorption and desorption properties of expanded poly(tetrafluoroethylene) films grafted with DMAEMA and their regeneration
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Adsorption and desorption properties of expanded poly(tetrafluoroethylene) films grafted with DMAEMA and their regeneration

机译:DMAEMA接枝发泡聚(四氟乙烯)薄膜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 the expanded poly (tetrafluoroethylene) (ePTFE) films grafted with 2-(dimethylamino)ethyl methacrylate (DMAEMA) to anionic dye anions with one to three sulfonic groups in response to temperature changes. The amount of adsorbed metanil yellow (MY) anions increased with the grafted amount and most of the dimethylamino groups appended to the grafted PDMAEMA chains worked as an adsorption site to MY anions for the DMAEMA-grafted ePTFE (ePTFE-g-PDMAEMA) films with the grafted amounts of higher than 1.1 mmol/g. When the dye-anion-adsorbed ePTFE-g-PDMAEMA films were alternately immersed in water at two different temperatures, dye anions were desorbed from the ePTFE-g-PDMAEMA films at higher temperatures without any chemical agents. The amount of desorbed dye anions increased with an increase in the temperature of water from 40 to 80 degrees C. Desorption of dye anions is caused by either deprotonation of dimethylamino groups appended to the grafted PDMAEMA chains or thermosensitive contraction of the grafted PDMAEMA chains. These results indicate that the ePTFE-g-PDMAEMA films can be applied as a regenerative ion-exchange membrane for adsorption and desorption processes of anionic compounds in response to the temperature change. The thermally regenerative ion-exchange properties of the ePTFE-g-PDMAEMA films was superior to that of the PE-g-PDMAEMA films reported in our previous article in the fact that the total degree of desorption was higher for the ePTFE-g-PDMAEMA films. (c) 2007 Wiley Periodicals, Inc.
机译:研究了用2-(二甲氨基)甲基丙烯酸乙酯(DMAEMA)接枝的膨胀聚(四氟乙烯)(ePTFE)薄膜对具有1-3个磺酸基团的阴离子的吸附和解吸性能。吸附的甲基乙酰黄(MY)阴离子的量随接枝量的增加而增加,接枝的PDMAEMA链上附着的二甲氨基大部分是接枝量高于1.1 mmol/g的DMAEMA接枝ePTFE(ePTFE-g-PDMAEMA)薄膜的MY阴离子的吸附位点。当染料-阴离子吸附的ePTFE-g-PDMAEMA薄膜在两种不同温度下交替浸入水中时,染料阴离子在较高温度下从ePTFE-g-PDMAEMA薄膜中解吸,无需任何化学试剂。解吸染料阴离子的量随着水温从40°C升高到80°C而增加,染料阴离子的解吸是由附着在接枝PDMAEMA链上的二甲氨基的去质子化或接枝PDMAEMA链的热敏收缩引起的。这些结果表明,ePTFE-g-PDMAEMA薄膜可作为蓄热式离子交换膜,用于阴离子化合物响应温度变化的吸附和解吸过程。ePTFE-g-PDMAEMA薄膜的热再生离子交换性能优于我们上一篇文章报道的PE-g-PDMAEMA薄膜,因为ePTFE-g-PDMAEMA薄膜的总解吸度更高。(c) 2007 Wiley Periodicals, Inc.

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