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首页> 外文期刊>Journal of industrial and engineering chemistry >A New era of water treatment technologies: 3D printing for membranes
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A New era of water treatment technologies: 3D printing for membranes

机译:新时代的水处理技术:膜3D印刷

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The commercialization of sustainable 3D printing technology changed the face of manufacturing with its precise and uniform sustainable fabrication. Therefore, like other fields of science, research related to water treatment membranes has adopted this technology successfully, preventing the waste of huge amounts of solvents and thus reducing the high carbon emissions caused by fabrication. Currently, critical research is being conducted in relation to the membrane modules and the fabrication of the membranes themselves. The module studies focus primarily on spacer production and the membrane studies are mostly concerned with the membrane surface. The membrane surface research has successfully adapted inkjet printing for enhanced surface properties for high selectivity and fouling resistance through the printing of nano-materials on the membranes' surfaces. Recently, 3D printing of the polymer membrane support or 3D printing-based interfacial polymerization has also been introduced into water treatment technologies. Since fouling resistance, selectivity and water permeability are the critical factors, many of the parameters can be controlled by the assistance of bespoke and precise 3D printing fabrication. In this study, we examine key aspects of technology which may shed light on future studies regarding 3D printed water treatment membranes and we review the critical developments to date. (C) 2020 The Korean Society of Industrial and Engineering Chemistry. Published by Elsevier B.V. All rights reserved.
机译:可持续3D印刷技术的商业化改变了其精确和均匀的可持续制造的制造。因此,与其他科学领域一样,与水处理膜相关的研究成功地采用了这项技术,防止了少量溶剂浪费,从而降低了制造引起的高碳排放。目前,正在与膜模块以及膜本身的制造进行关键研究。该模块研究主要关注间隔型生产,膜研究主要涉及膜表面。膜表面研究已经成功地调整喷墨印刷,通过在膜表面上印刷纳米材料的纳米材料的高选择性和污垢阻力来增强表面性能。最近,还将3D印刷的聚合物膜载体或3D印刷的界面聚合引入水处理技术。由于污垢抵抗,选择性和水渗透性是关键因素,因此许多参数可以通过定制和精确的3D印刷制造的辅助来控制。在这项研究中,我们研究了技术的关键方面,可能揭示了关于3D印刷水处理膜的未来研究,我们审查了迄今为止的关键发展。 (c)2020朝鲜工业与工程化学学会。 elsevier b.v出版。保留所有权利。

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