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首页> 外文期刊>Journal of Hazardous Materials >Integrating cationic metal-organic frameworks with ultrafiltration membrane for selective removal of perchlorate from Water
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Integrating cationic metal-organic frameworks with ultrafiltration membrane for selective removal of perchlorate from Water

机译:阳离子金属有机骨架与超滤膜的集成,可从水中选择性去除高氯酸盐

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摘要

We design a novel cationic metal-organic framework hybrid ultrafiltration polyvinylidene fluoride membrane (PVA/Cu-iMOFs/PVDF-0.05) and report its unique capture of aqueous perchlorate (ClO4-) at ppm-level. This membrane outperformed traditional adsorption materials and exhibited a specific affinity toward ClO4- in the presence of various competing anions at greater levels (up to a concentration ratio of 20). In the batch experiment, the ClO4- removal ratio reached 99.6% over a wide pH range (3(similar to)10). Membrane filtration by using a 12.56 cm(2) PVA/Cu-iMOFs/PVDF-0.05 membrane could effectively treat 4.71 L of ClO4--contaminated water before breakthrough occurred, while maintaining a satisfactory permeability ((similar to)627.32 L/(m(2)/h/bar)) and antifouling property. The exhausted membrane could easily be regenerated in aminoethanesulfonic acid solution for repeated use with a negligible decrease in capacity. Moreover, the membrane showed excellent long-term stability in a cross-flow filtration process due to the amido bond between the Cu-iMOFs and membrane surface as well as the "protection" of polyvinyl alcohol. Selective and reversible ion-exchange between the sulfonic acid (R-SO3) ligands of Cu-iMOFs and tetrahedral oxo-anionic species was verified to be the pathway for ClO4- trapping. Thus, other problematic elements that also occur in tetrahedral form in water can be removed by this method.
机译:我们设计了一种新型的阳离子金属-有机骨架混合超滤聚偏二氟乙烯膜(PVA / Cu-iMOFs / PVDF-0.05),并报告了其在ppm级高氯酸盐(ClO4-)的独特捕获。该膜的性能优于传统的吸附材料,并且在各种竞争性阴离子的存在下,以更高的浓度(浓度比最高为20)表现出对ClO4-的特定亲和力。在分批实验中,在较宽的pH范围内(3(相似)10),ClO4-的去除率达到了99.6%。使用12.56 cm(2)PVA / Cu-iMOFs / PVDF-0.05膜进行膜过滤可在突破发生之前有效处理4.71 L的ClO4污染的水,同时保持令人满意的渗透率((类似于)627.32 L /(m (2)/ h / bar))和防污性能。耗尽的膜可以很容易地在氨基乙烷磺酸溶液中再生,以便重复使用,而容量的降低可忽略不计。此外,由于Cu-iMOF和膜表面之间的酰胺键以及聚乙烯醇的“保护”,该膜在错流过滤过程中显示出优异的长期稳定性。 Cu-iMOFs的磺酸(R-SO3)配体与四面体含氧阴离子物种之间的选择性和可逆离子交换被证明是捕获ClO4-的途径。因此,通过该方法可以去除在水中也以四面体形式存在的其他有问题的元素。

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