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Fabricating MOF/Polymer Composites via Freeze Casting for Water Remediation

机译:通过冷冻浇铸制备MOF /聚合物复合材料以修复水

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Various porous materials have been used as adsorbents for water remediation. Among them, metal-organic framework (MOF) particles have been explored intensively, due to their size-controlled micropores and high surface areas. MOF nanoparticles are often used because of high external surface area and easy access to the micropores. However, recovering MOF nanoparticles, usually by filtration or centrifugation, is time-consuming and is difficult to scale up. We report here the preparation of porous MOF/polymer monoliths by freeze casting for water remediation. Chitosan and UiO-66 (Universitetet i Oslo) nanoparticles (including different surface functional groups) are used to prepare such monoliths. In order to improve the mechanical stability and the tendency of disintegrating in water, the freeze-dried UiO-66/chitosan monoliths are further treated by heating, washing with aqueous NaOH solution, or chemical crosslinking with glutaraldehyde. All these treated monoliths are used for adsorption of a herbicide methylchlorophenoxypropionic acid (MCPP) from aqueous solution. Particularly, the crosslinked chitosan/UiO-66 monolith achieves an adsorption capacity of 47.67 mg g1, with a 60 ppm MCPP solution. It is superior to that presented by the sole UiO-66 nanoparticles, exhibiting over a 30% increase in the adsorption capacity. The monoliths can be easily removed using tweezers, providing facile recyclability, which is advantageous for upscaling. The recycled monolith upheld approximately 75% of the adsorption capacity compared to the original monolith after three reuse cycles.
机译:各种多孔材料已被用作水修复的吸附剂。其中,由于其尺寸控制的微孔和高表面积,已对金属有机骨架(MOF)颗粒进行了深入研究。由于外表面积高且易于进入微孔,因此经常使用MOF纳米颗粒。然而,通常通过过滤或离心来回收MOF纳米颗粒是耗时的并且难以扩大规模。我们在这里报告通过冷冻铸造进行水修复的多孔MOF /聚合物整料的制备。壳聚糖和UiO-66(奥斯陆大学)纳米颗粒(包括不同的表面官能团)用于制备此类整体材料。为了提高机械稳定性和在水中崩解的趋势,将冷冻干燥的UiO-66 /壳聚糖整料通过加热,用NaOH水溶液洗涤或与戊二醛进行化学交联进一步处理。所有这些处理的整料都用于从水溶液中吸附除草剂甲基氯苯氧基丙酸(MCPP)。特别是,交联的壳聚糖/ UiO-66整料在60 ppm MCPP溶液中的吸附容量为47.67 mg g1。它优于唯一的UiO-66纳米颗粒所呈现的吸附能力,其吸附能力提高了30%以上。整块可以使用镊子轻松移除,从而提供了便捷的可回收性,这对于扩大规模非常有利。经过三个重复使用循环后,与原始整料相比,回收的整料保持了约75%的吸附能力。

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