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Influences of internal coagulant composition on microstructure and properties of porous YSZ hollow fibre membranes for water treatment

机译:内部混凝剂组成对水处理多孔YSZ中空纤维膜微结构和性能的影响

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Porous yttria-stabilized zirconia (YSZ) hollow fibre membranes were prepared by the combination of phase inversion and sintering technique. The mixtures of pure water/N-methyl-2-pyrrolidinone (NMP) with different NMP content were used as the internal coagulant and tap water was used as the external coagulant. The coagulation power of the internal coagulant was characterized by Hanson solubility parameters. The influences of internal coagulant composition on the microstructure and properties of YSZ hollow fibre membranes were investigated. Results show the addition of NMP decreases the coagulation power of the internal coagulant significantly, and leads to more porous inner surface, diminishing sponge-like layer and larger finger-like pores penetrating from the outer side to the inner surface. When the content of NMP reaches more than 90%, a highly asymmetric structure composed of outer thin skin layer and supporting finger-like structure layer can be obtained. The increase of NMP content in internal coagulant contributes to higher porosity, larger separation pore size, and thus higher pure water permeability and lower bending strength. The YSZ hollow fibre membrane, with pure NMP as internal coagulant, shows an average pore size of 0.58 mu m, pure water permeability of 10.89 m(3)/(m(2) h bar) and bending strength of 121.8 MPa sintered at 1320 degrees C for 5 h. The steady permeate flux in oil/water separation of the prepared hollow fibre membranes decreases with the increase of NMP content, while the oil rejection rate up to 99.5-99.8% shows no obvious change. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过相转化和烧结相结合的方法制备了氧化钇稳定的氧化锆(YSZ)中空纤维膜。纯净水/ NMP含量不同的N-甲基-2-吡咯烷酮(NMP)的混合物用作内部凝结剂,自来水用作外部凝结剂。内部混凝剂的凝结能力通过汉森溶解度参数进行表征。研究了内部混凝剂组成对YSZ中空纤维膜组织和性能的影响。结果表明,加入NMP会显着降低内部凝结剂的凝结能力,并导致内表面更加多孔,海绵状层减少以及从外侧向内表面渗透的较大的手指状细孔。当NMP的含量大于90%时,可以获得由外部薄皮层和支撑手指状结构层组成的高度不对称结构。内部凝结剂中NMP含量的增加有助于提高孔隙率,增大分离孔径,从而提高纯净水渗透率和降低弯曲强度。 YSZ中空纤维膜,以纯NMP作为内部凝结剂,显示平均孔径为0.58μm,纯水渗透率为10.89 m(3)/(m(2)h bar),在1320烧结的弯曲强度为121.8 MPa摄氏度5小时。所制备的中空纤维膜油水分离过程中的稳定渗透通量随NMP含量的增加而降低,而拒油率高达99.5-99.8%则无明显变化。 (C)2015 Elsevier B.V.保留所有权利。

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