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>Fabrication and performance of PET mesh enhanced cellulose acetate membranes for forward osmosis
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Fabrication and performance of PET mesh enhanced cellulose acetate membranes for forward osmosis
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机译:正渗透用PET网眼增强醋酸纤维素膜的制备与性能
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摘要
Polyethylene terephthalate mesh (PET) enhanced cellulose acetate membranes were fabricated via a phase inversion process. The membrane fabrication parameters that may affect the membrane performance were systematically evaluated including the concentration and temperature of the casting polymer solution and the temperature and time of the evaporation, coagulation and annealing processes. The water permeability and reverse salt flux were measured in forward osmosis (FO) mode for determination of the optimal membrane fabrication conditions. The optimal FO membrane shows a typical asymmetric sandwich structure with a mean thickness of about 148.2 mu m. The performance of the optimal FO membrane was tested using 0.2 mol/L NaCl as the feed solution and 1.5 mol/L glucose as the draw solution. The membrane displayed a water flux of 3.47 L/(m(2).hr) and salt rejection of 95.48% in FO mode. While in pressure retarded osmosis (PRO) mode, the water flux was 4.74 L/(m(2).hr) and salt rejection 96.03%. The high ratio of water flux in FO mode to that in PRO mode indicates that the fabricated membrane has a lower degree of internal concentration polarization than comparable membranes. (C) 2016 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
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机译:聚对苯二甲酸乙二酯网(PET)增强的醋酸纤维素膜是通过相转化工艺制成的。系统地评估了可能影响膜性能的膜制造参数,包括流延聚合物溶液的浓度和温度以及蒸发,凝聚和退火过程的温度和时间。以正渗透(FO)模式测量透水率和反盐通量,以确定最佳的膜制造条件。最佳的FO膜表现出典型的不对称夹心结构,平均厚度约为148.2微米。使用0.2 mol / L的NaCl作为进料溶液和1.5 mol / L的葡萄糖作为汲取溶液,测试了最佳FO膜的性能。该膜在FO模式下显示出3.47 L /(m(2).hr)的水通量和95.48%的脱盐率。在压力渗透(PRO)模式下,水通量为4.74 L /(m(2).hr),除盐率为96.03%。 FO模式下的水通量与PRO模式下的水通量之比高表明,所制造的膜比同类膜具有更低的内部浓度极化度。 (C)2016中国科学院生态环境研究中心。由Elsevier B.V.发布
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