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Feed Spacer Geometries and Permeability Coefficients. Effect on the Performance in BWRO Spriral-Wound Membrane Modules

机译:进料垫片的几何形状和渗透系数。对BWRO股绕膜组件性能的影响

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Reverse osmosis (RO) is the most widely used technology to desalinate brackish water and seawater. Significant efforts have been made in recent decades to improve RO efficiency. Feed spacer geometry design is a very important factor in RO membrane performance. In this work, correlations based on computational fluid dynamics and experimental work were applied in an algorithm to simulate the effect of different feed spacer geometries in full-scale brackish water reverse osmosis (BWRO) membranes with different permeability coefficients. The aim of this work was to evaluate the impact of feed spacers in conjunction with the permeability coefficients on membrane performance. The results showed a greater impact of feed spacer geometries in the membrane with the highest water permeability coefficient ( A ). Studying only one single element in a series, variations due to feed spacer geometries were observed in specific energy consumption ( S E C ) and permeate concentration ( C p ) of about 6.83% and 10.42%, respectively. Allowing the rolling of commercial membranes with different feed spacer geometries depending on the operating conditions could optimize the RO process.
机译:反渗透(RO)是使咸水和海水淡化的最广泛使用的技术。近几十年来,为提高反渗透效率做出了巨大努力。进料垫片的几何设计是反渗透膜性能的重要因素。在这项工作中,将基于计算流体动力学和实验工作的相关性应用到算法中,以模拟不同进料间隔物几何形状在具有不同渗透系数的全尺寸微咸水反渗透(BWRO)膜中的作用。这项工作的目的是评估进料垫片与渗透系数对膜性能的影响。结果表明,具有最高透水系数(A)的进料隔片几何形状对膜的影响更大。仅研究一个系列中的一个元素,观察到由于进料间隔物几何形状而引起的比能耗(SE)和渗透物浓度(C p)分别约为6.83%和10.42%。允许根据操作条件以不同的进料间隔物几何形状轧制商品化的膜可以优化反渗透工艺。

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