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Tuning the selectivity of thin film composite forward osmosis membranes: Effect of co-solvent and different interfacial polymerization synthesis routes

机译:调整薄膜复合前进渗透膜的选择性:共溶剂和不同界面聚合合成途径的影响

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The selectivity of thin film composite membranes supported by a sulfonated polyetheretherketone (sPEEK) hydrophilized polyethersulfone (PES) layer was enhanced by introducing a more volatile co-solvent, i.e. tetrahydrofuran (THF), and by using an alternative simplified preparation method (SIM), which combines the coagulation step of the phase inversion process and the impregnation of the amine monomer of the interfacial polymerization process. The addition of THF to the polymer casting solutions produced TFC membranes with higher retention but lower permeance. The lowest structural parameter (similar to 383 mu m) was found for the TFC membrane with a -10% sPEEK 10% THF support and led to water fluxes of 23 LMH in PRO mode and 11 LMH in FO mode using a DI water feed solution and a 0.5 M NaCl draw solution. A minimal membrane bottom surface porosity was necessary to accomplish satisfying water fluxes in FO. The SIM method resulted in TFC membranes with comparable selectivity but significantly higher permeance and smoother polyamide selective layers.
机译:通过引入更挥发的共溶剂,即四氢呋喃(THF),通过使用替代简化的制备方法(SIM),增强由磺化聚醚醚酮(Speek)亲水化的聚醚砜(PES)层的薄膜复合膜的选择性增强了增强,并使用替代的简化制备方法(SIM),它结合了相反转过程的凝结步骤和界面聚合过程的胺单体的浸渍。将THF添加到聚合物浇铸溶液中产生TFC膜,保留较高,但渗透率下降。发现TFC膜的最低结构参数(类似于383μm),具有-10%Speek 10%THF载体,并使用DI水饲料溶液将Pro模式下的23LmH的水通量为23 LMH和0.5米的NaCl绘制溶液。需要最小的膜底表面孔隙率来完成满足FO的水通量。 SIM方法导致具有可比性选择性的TFC膜,但显着更高的渗透和更流畅的聚酰胺选择性层。

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