首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Crosslinked Copolyimide Membranes for Phenol Recovery from Process Water by Pervaporation
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Crosslinked Copolyimide Membranes for Phenol Recovery from Process Water by Pervaporation

机译:通过全蒸发从工艺用水中回收苯酚的交联共聚酰亚胺膜

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摘要

The effectiveness of different copolyimide membranes in the process of recovering phenol from water by pervaporation has been investigated. The polyimides were obtained by the polycondensation of 6FDA (4.4′-hexafluoro-isopropylidene diphhalic anhydride) with different diamines. The diamines 4MPD (2,3,5,6-tetramethyl-1,4-phenylene diamine), 6FpDA (4.4′-hexafluoro-isopropylidene dianiline),6FpODA (4.4′-bis-(4′-aminophenoxyphenyl)-hexafluoropropane), and DABA (3.5-diaminobenzoic acid)as a monomer providing a crosslinkable group, were used, in order to reach chemical stability at high phenol concentrations, the polymer structures were crosslinked with 1.10-decanedial and OFHD (2,2,3,3,4,4,5,5-octafluorohexanediol). Pervaporation experiments were performed at 60 ℃, covering a concentration range of phenol between 2 and 11wt,%. The best separation characteristics were obtained with a 6FDA-6FpDA/DABA 2:1 membrane crosslinked with 1.10-decanediol. Using a 7.8wt.% phenol feed mixture, a total flux of 14 kg μmm~(-2)h~(-1) was reached with an enrichment of 40 wt.% phenol in the permeate. It was found that conditioning the membrane using high phenol concentrations (between 8 and 11 wt.%) is a necessary pretreatment in order to enhance the flux and improve enrichment, especially if process water with low phenol concentrations is to be treated. In addition to the experimental results, a comparison with rubbery membrane materials is presented in the discussion.
机译:研究了不同共聚酰亚胺膜在通过全蒸发从水中回收苯酚的过程中的有效性。通过将6FDA(4.4'-六氟-异亚丙基二邻苯二甲酸酐)与不同的二胺缩聚而获得聚酰亚胺。二胺4MPD(2,3,5,6-四甲基-1,4-亚苯基二胺),6FpDA(4.4'-六氟-异亚丙基二苯胺),6FpODA(4.4'-双-((4'-氨基苯氧基苯基)-六氟丙烷),使用DABA(3.5-二氨基苯甲酸)作为提供可交联基团的单体,为了在高酚浓度下达到化学稳定性,将聚合物结构与1.10-癸二醛和OFHD(2,2,3,3, 4,4,5,5-八氟己二醇)。在60℃进行了全蒸发实验,覆盖了2至11wt。%的苯酚浓度。用与1.10-癸二醇交联的6FDA-6FpDA / DABA 2:1膜可获得最佳分离特性。使用7.8wt。%的苯酚进料混合物,在渗透物中富集了40wt。%的苯酚,达到了14kgμmm2 -h-2的总通量。发现为了提高通量和改善富集,使用高酚浓度(在8和11wt。%之间)调节膜是必要的预处理,特别是如果要处理低酚浓度的工艺用水。除了实验结果外,讨论中还介绍了与橡胶膜材料的比较。

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