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首页> 外文期刊>Journal of Applied Polymer Science >Preparation of polysulfone hollow fiber affinity membrane modified with mercapto and its recovery properties. II. Preparation of PSF-SH hollow fiber affinity membrane for recovery of Hg2+
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Preparation of polysulfone hollow fiber affinity membrane modified with mercapto and its recovery properties. II. Preparation of PSF-SH hollow fiber affinity membrane for recovery of Hg2+

机译:巯基修饰的聚砜中空纤维亲和膜的制备及其回收性能。二。回收Hg2 +的PSF-SH中空纤维亲和膜的制备

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摘要

A high qualified polysulfone hollow fiber affinity membrane modified with mercapto as chelating groups was prepared by phase inversion technology using chlormethyl polysulfone (CMPSF) as membrane matrix materials, through the reaction between thiourea and CMPSF hollow fiber matrix membrane to afford the methyl isothiourium polysulfone and was then alkaline hydrolyzed. The adsorption isotherms of the hollow fiber affinity membrane chromatography for Hg2+ were determined, and the effects of mobile phase conditions and the operating parameters on removal performance of the hollow fiber affinity membrane chromatography for Hg2+ were also investigated. The experimental results showed that adsorption isotherms of Hg2+ could be described by the Langmuir isotherm. Addition of NaCl into feed solution for the increase of ionic strength was harmful for the removal of Hg2+. The recovery of Hg2+ decreased at low pH and the optimum range of pH was from 5.0 to 7.0. The feed concentration had a remote effect on recovery of Hg2+ at the specified loading amount of Hg2+, and the Hg2+ could be removed from different concentration feed solution by the hollow fiber affinity membrane chromatography. The increase of feed flow rate led to slight decrease of recovery of Hg2+ at the specified loading amount of Hg2+. The hollow fiber affinity membrane chromatography Could be operated at height feed flow rate and a large scale removal of Hg2+ Could be realized. With the increase of load amount, Hg2+ recovery decreased, but the saturation degree of hollow fiber affinity membrane chromatography increased. According to required recovery of Hg2+ and the saturation degree of membrane chromatography, the optimum loading amount of Hg2+ should be selected in the actual removal of Hg2+. (c) 2006 Wiley Periodicals, Inc.
机译:以氯甲基聚砜(CMPSF)为膜基质材料,通过相转化技术,通过硫脲与CMPSF中空纤维基质膜的反应,得到甲基异硫脲聚砜。然后碱解。测定了中空纤维亲和膜色谱对Hg2 +的吸附等温线,并研究了流动相条件和操作参数对中空纤维亲和膜色谱对Hg2 +的去除性能的影响。实验结果表明,Langmuir等温线可以描述Hg2 +的吸附等温线。在进料溶液中添加NaCl以增加离子强度对去除Hg2 +有害。在低pH条件下,Hg2 +的回收率降低,最适pH范围为5.0至7.0。进料浓度对Hg2 +在规定的负载量下对Hg2 +的回收率影响很小,并且可以通过中空纤维亲和膜色谱法从不同浓度的进料溶液中去除Hg2 +。进料流速的增加导致在指定的Hg2 +负载量下Hg2 +的回收率略有下降。中空纤维亲和膜色谱可以在高进料流速下操作,并且可以实现大规模去除Hg2 +。随着负载量的增加,Hg2 +的回收率降低,但中空纤维亲和膜色谱的饱和度增加。根据所需的Hg2 +回收率和膜色谱的饱和度,在实际去除Hg2 +时应选择最佳的Hg2 +上样量。 (c)2006年Wiley Periodicals,Inc.

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