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Bilayer Compounded Polytetrafluoroethylene Membrane for Enhanced Oil-Water Emulsion Separation
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作者 Yu-Liang Yang Tai-Ran Zhang +3 位作者 Yan-Ting Han Shao-Yun Guo Qin-Gong Rong jia-bin shen 《Chinese Journal of Polymer Science》 SCIE EI CAS CSCD 2024年第6期838-850,共13页
In order to achieve efficient and durable oil-water emulsion separation,the membranes possessing high separation efficiency and mechanical strength attract extensive attention and are in great demand.In present study,... In order to achieve efficient and durable oil-water emulsion separation,the membranes possessing high separation efficiency and mechanical strength attract extensive attention and are in great demand.In present study,a kind of polytetrafluoroethylene(PTFE)-based bilayer membrane was fabricated by electrospinning fibrous PTFE(fPTFE)on an expanded PTFE(ePTFE)substrate.The morphological observation revealed that the fibrous structure of the fPTFE layer could be tailored by controlling the formulation of spinning solution.The addition of appropriate polyoxyethylene(PEO)would make the fibers in the fPTFE layer finer and more uniform.As a result,the compounded membrane exhibited a small pore size of approximately 1.25µm and a substantial porosity nearing 80%.This led to super-hydrophobicity,characterized by a high water contact angle(WCA)of 149.8°,and facilitated rapid oil permeation.The water-in-oil emulsion separation experiment further confirmed that the compounded membrane not only had a high separation efficiency closing 100%,but such an outstanding separation capacity could be largely retained,either through multiple cycles of use or through strong acid(pH=1),strong alkali(pH=12),or high-temperature(100°C)treatment.Additionally,the mechanical behavior of the bilayer membrane was basically contributed by that of each layer in terms of their volume ratio.More significantly,the poor creep resistance of fPTFE layer was suppressed by compounding with ePTFE substrate.Hence,this study has laid the groundwork for a novel approach to create PTFE-based compounded membranes with exceptional overall characteristics,showing promise for applications in the realm of emulsion separation. 展开更多
关键词 EPTFE Electrospinning membrane Bilayer compounding Emulsion separation
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高分子材料刮擦行为研究进展 被引量:9
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作者 徐杨 李顿 +2 位作者 沈佳斌 郭少云 Hung-Jue Sue 《高分子学报》 SCIE CAS CSCD 北大核心 2018年第10期1262-1278,共17页
随着高分子材料在光学、包装、汽车及建筑装饰等领域的广泛应用,市场对其表面质量的要求越来越高.刮擦是尖锐硬物在材料表面滑动时产生的一种力学变形和破坏行为.多维复杂应力的作用使材料表面因塑性变形而形成可见划痕,从而对材料的美... 随着高分子材料在光学、包装、汽车及建筑装饰等领域的广泛应用,市场对其表面质量的要求越来越高.刮擦是尖锐硬物在材料表面滑动时产生的一种力学变形和破坏行为.多维复杂应力的作用使材料表面因塑性变形而形成可见划痕,从而对材料的美观性、完整性和持久性带来负面影响.近年来,随着刮擦测试方式和相关标准的建立,并结合计算机的模拟预测,研究者们对高分子材料在刮擦过程中的破坏模式与机理及其内在多层次结构与刮擦性能关系的理解日趋深入,从而为高分子材料的耐刮擦性能改性提供了重要的实验和理论依据.基于此,本文综述了国内外在高分子材料刮擦性能测试和表征方法、刮擦过程中的变形与破坏机理、刮擦行为的影响因素以及耐刮擦改性方法等方面的研究进展. 展开更多
关键词 高分子材料 表面 刮擦 结构与性能
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