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Thiol Functionalized Silica-Mixed Matrix Membranes for Silver Capture from Aqueous Solutions: Experimental Results and Modeling

机译:用于从水溶液中捕获银的硫醇官能化二氧化硅混合基质膜:实验结果和模型

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摘要

The study deals with an aqueous phase application of Mixed Matrix Membranes (MMMs) for silver ion (Ag+) capture. Silica particles were functionalized with 3-mercaptopropyltrimethoxy silane (MPTMS) to introduce free thiol (-SH) groups on the surface. The particles were used as the dispersed phase in the polysulfone or cellulose acetate polymer matrix. The membranes were prepared by the phase inversion method to create more open and interconnected porous structures suitable for liquid phase applications. The effects of the silica properties such as particle size, specific surface area, and porousonporous morphology on the silver ion capture capacity were studied. It was demonstrated that the membranes are capable of selectively capturing silver from a solution containing significant concentrations of other metal ions like Ca2+. The membranes were studied to quantify the dynamic capacity for silver ion capture and its dependence on residence time through the adjustment of transmembrane pressure. The thiol-Ag+ interaction was quantified with Quartz Crystal Microbalance in a continuous flow mode experiment and the observations were compared with the membrane results. One dimensional unsteady state model with overall volumetric mass transfer coefficient was developed and solved to predict the silver concentration in the liquid phase and the solid silica phase along the membrane thickness at varying time. The breakthrough data predicted using the model is comparable with the experimental observations. The study demonstrates successful application of the functionalized silica-mixed matrix membranes for selective aqueous phase Ag+ capture with high capacity at low transmembrane pressures. The technique can be easily extended to other applications by altering the functionalized groups on the silica particles.
机译:该研究涉及混合基质膜(MMM)在水相中用于银离子(Ag + )捕获的应用。用3-巯基丙基三甲氧基硅烷(MPTMS)对二氧化硅颗粒进行功能化,以在表面引入游离巯基(-SH)。将该颗粒用作聚砜或乙酸纤维素聚合物基质中的分散相。通过相转化法制备膜,以产生更适合于液相应用的开放且互连的多孔结构。研究了二氧化硅性质(如粒径,比表面积和多孔/无孔形态)对银离子捕获能力的影响。结果表明,该膜能够从含有大量其他金属离子(如Ca 2 + )的溶液中选择性地捕获银。对膜进行了研究,以通过调节跨膜压力来量化捕获银离子的动态能力及其对停留时间的依赖性。在连续流动模式实验中,使用石英晶体微量天平对巯基-Ag + 相互作用进行定量,并将观察结果与膜结果进行比较。建立了具有整体体积传质系数的一维非稳态模型,并将其求解以预测在不同时间沿着膜厚度的液相和固态二氧化硅相中的银浓度。使用该模型预测的突破数据与实验观察结果相当。研究表明,功能化二氧化硅混合基质膜在低跨膜压力下以高容量成功地选择性捕获水相Ag + 的成功应用。通过改变二氧化硅颗粒上的官能团,可以轻松地将该技术扩展到其他应用。

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