On the role of the porous support membrane in seawater reverse osmosis membrane synthesis, properties and performance

IF 8.4 1区 工程技术 Q1 ENGINEERING, CHEMICAL Journal of Membrane Science Pub Date : 2024-07-01 DOI:10.1016/j.memsci.2024.123032
Derrick S. Dlamini , Javier A. Quezada-Renteria , Jishan Wu , Minhao Xiao , Mackenzie Anderson , Richard B. Kaner , Arian Edalat , Nikolay Voutchkov , Ahmed Al-Ahmoudi , Eric M.V. Hoek
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Abstract

In this study, we explore the role of the polysulfone (PSU) support membrane skin-layer and whole-body pore morphology on the physical-chemical properties and separation performance of hand-cast polyamide-PSU (PA-PSU) composite seawater reverse osmosis (SWRO) membranes. We tailor the support membrane pore morphology by varying the PSU concentration and the coagulation bath temperature. In order to isolate the impacts of the PSU support, all of the porous supports are coated using identical m-phenylene diamine (MPD) and trimesoyl chloride (TMC) solution compositions, reaction conditions, and post-treatments. As PSU concentration increases, PSU support membrane pore size, surface and body porosity, water permeability, MPD mass uptake (by the PSU support), and PA-PSU composite membrane water permeability decrease, while MPD and TMC conversion, PA film mass and thickness, crosslinking degree (XD), and PA-PSU composite membrane NaCl rejection increase. As PSU support membrane coagulation bath temperature increases, support membrane pore size, surface and body porosity, MPD uptake, PA film mass, thickness and XD, MPD and TMC conversion, and NaCl rejection increase, while composite PA-PSU membrane water and NaCl permeability decrease. Composite membrane permeabilities were 70–90 percent of the (theoretical) unsupported PA film permeabilities due to the high XD and low PA coating film thickness. Composite PA-PSU membrane water/salt permeabilities both correlate most strongly with PA coating film mass/thickness and XD, which in turn correlate most strongly with TMC conversion. The key to increasing water permeability is lower PA film mass/thickness and XD with higher support membrane surface pore size and porosity. In contrast, the key to increasing NaCl rejection is higher PA film mass/thickness and XD with lower support membrane surface pore size and porosity.

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多孔支撑膜在海水反渗透膜合成、特性和性能中的作用
在本研究中,我们探讨了聚砜(PSU)支撑膜表皮层和整体孔隙形态对手工浇铸聚酰胺-PSU(PA-PSU)复合海水反渗透(SWRO)膜的物理化学特性和分离性能的影响。我们通过改变 PSU 浓度和凝固浴温度来调整支撑膜孔隙形态。为了隔离 PSU 支撑物的影响,我们使用相同的间苯二胺(MPD)和三甲基甲酰氯(TMC)溶液成分、反应条件和后处理方法对所有多孔支撑物进行涂覆。随着 PSU 浓度的增加,PSU 支撑膜的孔径、表面和主体孔隙率、透水性、MPD 质量吸收量(由 PSU 支撑)和 PA-PSU 复合膜的透水性降低,而 MPD 和 TMC 转化率、PA 膜质量和厚度、交联度 (XD) 和 PA-PSU 复合膜的 NaCl 排斥增加。随着 PSU 支撑膜凝固浴温度的升高,支撑膜的孔径、表面和主体孔隙率、MPD 吸收率、PA 膜质量、厚度和 XD、MPD 和 TMC 转化率以及 NaCl 排斥增加,而 PA-PSU 复合膜的透水性和 NaCl 渗透率降低。由于高 XD 和低 PA 涂层膜厚度,复合膜的渗透率是无支撑 PA 膜渗透率(理论值)的 70-90%。PA-PSU 复合膜的透水/透盐率与 PA 涂层膜质量/厚度和 XD 的相关性最大,而这又与 TMC 转化率的相关性最大。提高透水性的关键是降低 PA 薄膜质量/厚度和 XD,同时提高支撑膜表面孔径和孔隙率。与此相反,增加 NaCl 排出量的关键是较高的 PA 膜质量/厚度和 XD 以及较低的支撑膜表面孔径和孔隙率。
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来源期刊
Journal of Membrane Science
Journal of Membrane Science 工程技术-高分子科学
CiteScore
17.10
自引率
17.90%
发文量
1031
审稿时长
2.5 months
期刊介绍: The Journal of Membrane Science is a publication that focuses on membrane systems and is aimed at academic and industrial chemists, chemical engineers, materials scientists, and membranologists. It publishes original research and reviews on various aspects of membrane transport, membrane formation/structure, fouling, module/process design, and processes/applications. The journal primarily focuses on the structure, function, and performance of non-biological membranes but also includes papers that relate to biological membranes. The Journal of Membrane Science publishes Full Text Papers, State-of-the-Art Reviews, Letters to the Editor, and Perspectives.
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