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Spontaneous water cleanup using an epoxy-based polymer monolith

机译:使用环氧基聚合物整料进行自发水净化

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Spontaneous cleanup processes based on capillary action for natural water containing humic acids were carried out using an epoxy-based polymer monolith. We were able to control the microstructures of monoliths by changing the polymerization conditions, including the curing agent/monomer/porogenic solvent ratio and the polymerization temperature. Furthermore, we confirmed that updrawing of water based on capillary action was highly dependent on the microstructures of the monolith, i. e., whether they are structures of particle aggregates, non-porous structures, or three-dimensional monolithic structures. The epoxy-based monoliths have a unique ability to adsorb hydrophobic and anionic compounds because the monoliths are prepared using epoxy monomers and curing agents with amines, and therefore, the monoliths can be used for the selective adsorption of polyphenols such as humic acids. In fact, we used a siphonic system to completely remove the humic acids in water samples and for the spontaneous cleanup of real pond water via spontaneous updrawing of water by " J"-shaped monoliths.
机译:使用基于环氧的聚合物整料,对含腐殖酸的天然水进行基于毛细作用的自发清洁过程。通过改变聚合条件,包括固化剂/单体/成孔剂的比例和聚合温度,我们能够控制整体结构的微观结构。此外,我们证实基于毛细作用的水吸收高度依赖于整体结构的微观结构,即。例如,它们是颗粒聚集体的结构,无孔结构还是三维整体结构。环氧基整料具有独特的吸附疏水和阴离子化合物的能力,因为整料是使用环氧单体和带有胺的固化剂制备的,因此,整料可用于选择性吸附多酚(例如腐殖酸)。实际上,我们使用虹吸系统完全去除了水样中的腐殖酸,并通过“ J”形整体式自发吸水来自发净化真实的池塘水。

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