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首页> 外文期刊>Journal of Membrane Science & Technology >Relating Water/Solute Permeability Coefficients to the Performance of Thin-Film Nanofiber Composite Forward Osmosis Membrane
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Relating Water/Solute Permeability Coefficients to the Performance of Thin-Film Nanofiber Composite Forward Osmosis Membrane

机译:水/溶质渗透系数与薄膜纳米纤维复合正渗透膜性能的关系

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The thin-film nanofiber composite (TNC) forward osmosis (FO) membranes are fabricated and systematically modified by a series of post treatments, such as adding additives into the monomer, NaOH treatment, chlorine treatment and support modification. The post treatments lead to the formation of modified membranes with a wide range of water permeability (A) and solute permeability (B) values. The impact of varied A, B and B/A values on the FO performance are systematically investigated. Furthermore, the value of B/A is related to internal concentration polarization (ICP), external concentration polarization (ECP) and solute leakage, which are firstly proposed in this study. Compared with the Pressure Retarded Osmosis (PRO) orientation (i.e., active layer facing draw solution), the water flux is much lower at FO orientation (i.e., active layer facing feed solution) due to severe loss of effective osmotic pressure, which mainly results from the convective dilution and low mass transfer coefficient in support membrane (i.e., the D/S value). In addition to this, the coupled effect of solute leakage and low D/S value also causes a minor loss of effective osmotic pressure. This is the first study to systematically analyze the B-A relationship of TNC membranes employing different modification techniques and to investigate the impact on the FO performance.
机译:薄膜纳米纤维复合材料(TNC)正渗透(FO)膜是通过一系列后处理(例如在单体中添加添加剂,NaOH处理,氯处理和载体改性)制成并进行系统改性的。后处理导致形成具有宽范围的水渗透率(A)和溶质渗透率(B)值的改性膜。系统地研究了变化的A,B和B / A值对FO性能的影响。此外,B / A的值与内部浓度极化(ICP),外部浓度极化(ECP)和溶质泄漏有关,这是本研究首先提出的。与有效压力渗透(PRO)方向(即,面向汲取溶液的活性层)相比,在缓速渗透(PRO)方向上(即面向进水溶液的活性层),水通量要低得多,这是由于有效渗透压的严重损失所致。是由于对流稀释和支撑膜中的传质系数低(即D / S值)引起的。除此之外,溶质泄漏和低D / S值的耦合效应还导致有效渗透压的轻微损失。这是首次使用不同的修饰技术系统分析TNC膜的B-A关系并研究对FO性能的影响的研究。

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