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Performances of, nanofiltration and low pressure reverse osmosis membranes for desalination: characterization and modelling

机译:纳米滤热和低压反渗透膜进行脱盐的性能:表征和建模

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The nanofiltration and the reverse osmosis processes are the most common techniques for the desalination of water contaminated by an excess of salts. In this present study, we were interested in the characterization of commercial, composite and asymmetric membranes of nanofiltration (NF90, NF270) and low pressure reverse osmosis (BW30LE). The two types of characterization that we opted for our study: (i) characterization of electrical proprieties, in terms of the surface charge of various membranes studied by the measurement of the streaming potential, (ii) hydrodynamic characterization in terms of hydraulic permeability with pure water, mass transfer and phenomenological parameters for each system membrane/salt using hydrodynamic approaches. The irreversible thermodynamics allowed us to model the observed retention R_(obs) of salts (NaCl and Na2SO4) for the different membranes studied, to understand and to predict a good filtration with a membrane. A study was conducted on the type of mass transfer for each system membrane/salt: convection and diffusion. The results showed that all tested membranes are negatively charged for the solutions at neutral pH, this is explained by their material composition. The results also showed competitiveness between the different types of membranes. In view of that the NF remains effective in terms of selective retention with less energy consumption than LPRO.
机译:纳滤和反渗透过程是用于水的通过过量的盐的污染脱盐的最常用的技术。在此研究中,我们感兴趣的是纳滤的商业,复合材料和不对称膜(NF90,NF270)和低压反渗透(BW30LE)的表征。这两种类型的表征,我们选择了我们的研究:电礼(i)的特性,在表面电荷通过流动电位的测量中,(ⅱ)的流体动力学特性研究各种膜的方面在液压渗透性方面与纯水,传质和现象的参数用于使用流体动力学方法的每个系统的膜/盐。不可逆热力学允许我们模拟所观察到的保留R_(OBS)盐(NaCl和Na2SO4),用于研究了不同的膜,理解和预测良好的过滤用膜的。对流和扩散:一个研究在对每个系统的膜/盐传质的类型进行。结果表明,所有测试的膜为负在中性pH溶液带电,这是通过它们的材料组合物中说明。研究结果还显示,不同类型的膜之间的竞争力。鉴于该NF保持有效与能耗比LPRO更少选择性保留的条款。

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