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采用 3D 打印技术制备的各种进料间隔材料对正向渗透膜系统性能行为的研究。

Investigation of the performance behavior of a forward osmosis membrane system using various feed spacer materials fabricated by 3D printing technique.

机构信息

School of Earth Sciences and Environmental Engineering, Gwangju Institute of Science and Technology (GIST), 261 Cheomdangwagi-ro, Buk-gu, Gwangju, South Korea.

Department of Civil and Environmental Engineering, 125 Sackett Building, Pennsylvania State University, University Park, PA 16802, USA.

出版信息

Chemosphere. 2018 Jul;202:708-715. doi: 10.1016/j.chemosphere.2018.03.147. Epub 2018 Mar 22.

DOI:10.1016/j.chemosphere.2018.03.147
PMID:29602103
Abstract

Recently, feed spacer research for improving the performance of a membrane module has adopted three-dimensional (3D) printing technology. This study aims to improve the performance of membrane feed spacers by using various materials and incorporating 3D printing. The samples were fabricated after modeling with 3D computer-aided design (CAD) software to investigate the mechanical strength, water flux, reverse solute flux, and fouling performances. This research was performed using acrylonitrile butadiene styrene (ABS), polypropylene (PP), and natural polylactic acid (PLA) as printing material, and the spacer model was produced using a diamond-shaped feed spacer, with a commercially available product as a reference. The 3D printed samples were initially compared in terms of size and precision with the 3D CAD model, and deviations were observed between the products and the CAD model. Then, the spacers were tested in terms of mechanical strength, water flux, reverse solute flux, and fouling (alginate-based waste water was used as a model foulant). Although there was not much difference among the samples regarding the water flux, better performances than the commercial product were obtained for reverse solute flux and fouling resistance. When comparing the prominent performance of natural PLA with the commercial product, PLA was found to have approximately 10% less fouling (based on foulant volume per unit area and root mean square roughness values), although it showed similar water flux. Thus, another approach has been introduced for using bio-degradable materials for membrane spacers.

摘要

最近,为了提高膜组件的性能,在饲料间隔器的研究中采用了三维(3D)打印技术。本研究旨在通过使用各种材料和整合 3D 打印来提高膜饲料间隔器的性能。使用 3D 计算机辅助设计(CAD)软件进行建模后制造了样品,以研究机械强度、水通量、反向溶质通量和污垢性能。这项研究使用丙烯腈-丁二烯-苯乙烯(ABS)、聚丙烯(PP)和天然聚乳酸(PLA)作为打印材料,并使用商业上可用的产品作为参考,生产了具有菱形进料间隔器的间隔器模型。首先,使用 3D 打印样品与 3D CAD 模型在尺寸和精度方面进行了比较,发现产品与 CAD 模型之间存在偏差。然后,对机械强度、水通量、反向溶质通量和污垢(以藻酸盐基废水为模型污染物)进行了测试。虽然水通量方面各样本之间没有太大差异,但在反向溶质通量和抗污染方面的性能优于商业产品。在比较天然 PLA 的突出性能与商业产品时,发现 PLA 的污垢(基于单位面积的污染物体积和均方根粗糙度值)减少了约 10%,尽管它的水通量相似。因此,为了使用可生物降解材料作为膜间隔器,引入了另一种方法。

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