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Track-Etch membranes: the Kazakh experience

机译:蚀刻膜:哈萨克斯坦的经验

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摘要

In 1972 track-etch membranes were first developed by General Electric Corporation. Initially used as a simple laboratory tool, track-etch processes have grown into an industrial method of considerable technological and commercial impact. For instance, track-etch membranes are widely utilized for liquid and gas purification, controlled drug delivery, cell culturing, and serve as supports or templates. Track-etch technology utilizes heavy ion accelerators meaning exploitation of such a technology is relatively inaccessible to most. The existence of a unique heavy ion accelerator in the Republic of Kazakhstan (RK) provides the country with an opportunity to manufacture domestically track-etch membranes. In this work fabrication of symmetrical polyethylene terephthalate (PET) track-etch membranes using a heavy ion accelerator located in the capital city of RK, Astana, is presented. The developed membranes have been examined using a scanning electron microscope (SEM), a goniometer, and mechanical and water permeability testers; the results obtained having been compared with characteristics of commercially available membranes.
机译:1972年,通用电气公司首次开发了磁道蚀刻膜。最初用作简单的实验室工具,轨迹蚀刻工艺已发展成为具有相当大的技术和商业影响力的工业方法。例如,轨迹蚀刻膜被广泛用于液体和气体的净化,受控的药物输送,细胞培养,并用作载体或模板。轨迹蚀刻技术利用了重离子加速剂,这意味着大多数人相对难以使用这种技术。哈萨克斯坦共和国(RK)独特的重离子促进剂的存在为该国提供了制造国内痕迹蚀刻膜的机会。在这项工作中,提出了使用位于阿斯塔纳RK省会城市RK的重离子加速器制造对称的聚对苯二甲酸乙二醇酯(PET)轨迹蚀刻膜的方法。已经使用扫描电子显微镜(SEM),测角仪以及机械和水渗透性测试仪检查了已显影的膜。将获得的结果与市售膜的特性进行了比较。

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