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Mixed matrix membranes incorporated with sonication-assisted ZIF-8 nanofillers for hazardous wastewater treatment

机译:混合基质膜与超声波辅助ZIF-8纳米填充物,用于危险废水处理

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Mixed matrix membranes (MMMs) provide a unique pathway to treat hazardous industrial effluents. MMMs containing zeolitic imidazolate framework-8 (ZIF-8) as filler in polydimethoxysilane (PDMS) matrix were synthesized. ZIF-8 was prepared using a modified recipe and characterized by different techniques to evaluate its morphology, thermal stability, surface area, pore volume, and other characteristics. The performance of membranes was evaluated for their application in industrial dye-stuff wastewater treatment and solvent-resistant nanofiltration. The results demonstrated that increase in the percentage of ZIF-8 loading in PDMS led to simultaneous increase in the solvent permeability as well as solute rejection from wastewater. The permeability of MMMs increased up to 32% as compared with neat PDMS membrane. The organic dye rejection was achieved more than 87% with MMMs incorporated with 20% loading of nanofillers. Rejection of MMMs was 22% higher than that of unfilled PDMS membrane due to the effect of reduced polymer swelling and size exclusion of the nanofillers. Membrane swelling tests with toluene and isopropanol demonstrated that nanofiller amount has inverse relation with membrane swelling, which implied that nanofillers were in good interaction with polymer and allowed defect free membranes with higher solute rejections and reduced membrane swelling.
机译:混合基质膜(MMMS)提供一种可占危险工业流出物的独特途径。合成含有沸石咪唑酯框架-8(ZIF-8)作为聚二甲氧基硅烷(PDMS)基质中的填料的MMM。使用改性配方制备ZIF-8,其特征在于不同的技术,以评估其形态,热稳定性,表面积,孔体积和其他特征。评价膜的性能在工业染料废水处理和耐溶剂纳米过滤中的应用。结果表明,PDMS中ZIF-8负载百分比的增加导致溶剂渗透性的同时增加以及废水中的溶质排斥。与纯PDMS膜相比,MMM的渗透率高达32%。有机染料抑制率达到87%,含有20%负载纳米填料的MMM。由于降低的聚合物溶胀和尺寸排除纳米填充物,对MMM的抑制比未填充的PDMS膜的抑制性高出22%。用甲苯和异丙醇的膜溶胀试验证明纳米填充量与膜膨胀具有逆关系,这暗示纳米填充物与聚合物具有良好的相互作用,并允许缺陷的自由膜与更高的溶质排斥和减少的膜溶胀。

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