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A thin-film composite-hollow fiber forward osmosis membrane with a polyketone hollow fiber membrane as a support

机译:一种薄膜复合中空纤维前渗透膜,具有聚酮中空纤维膜作为载体

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We have developed a thin-film composite (TFC) hollow fiber (HF) forward osmosis (FO) membrane using a polyketone HF membrane as a support. To investigate the effect of the diameter of the HF support membrane on the resulting FO performance of the TFC-HF-FO membrane, two-types of HFs with different inner diameters (HF-A: 347 pm and HF-B: 609 pm) were used. The FO performance of the prepared TFC membranes was measured and then analyzed using intrinsic membrane parameters obtained by an FO fitting method. These intrinsic parameters can be used to estimate the experimental data under various operating conditions. The prepared TFC-FO membrane using the HF with smaller diameter (TFC-FO (HF-A)) showed higher FO flux and better mechanical properties than those of the membrane prepared using the HF with larger diameter (TFC-FO (HF-B)), while higher operational pumping energy consumption is necessary because of higher bore-side pressure drop. Barlow's equation and the Hagen-Poiseuille equation were used to analyze the experimental data on the maximum burst pressure and the data on bore-side pressure drop of the prepared TFC FO membranes, respectively. The prepared TFC-FO membrane using the HF with smaller diameter showed one of highest FO fluxes yet reported in the literature. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们开发了一种薄膜复合材料(TFC)中空纤维(HF)前渗透(HF)膜,其使用聚酮HF膜作为载体。为了研究HF支撑膜直径对TFC-HF-FO膜的结果的影响,两种具有不同内径的HFS(HF-A:347MM和HF-B:609)被使用了。测量制备的TFC膜的FO性能,然后使用通过FO拟合方法获得的内在膜参数分析。这些内在参数可用于在各种操作条件下估计实验数据。使用具有较小直径的HF的制备的TFC-FO膜(TFC-FO(HF-A))显示出比使用具有较大直径(TFC-FO(HF-B(HF-B(HF-B)制备的膜的磁通量更高的磁通量和更好的机械性能。 )),虽然具有更高的孔侧压降,但是需要更高的操作泵送能量消耗。 Barlow的等式和Hagen-Poiseuille方程分别用于分析最大突发压力的实验数据和制备的TFC FO膜的孔侧压降数据。使用具有较小直径的HF的制备的TFC-FO膜显示出在文献中报道的最高助熔剂中的一种。 (c)2016 Elsevier B.v.保留所有权利。

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