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首页> 外文期刊>AIChE Journal >Reverse Osmosis Performance of Organosilica Membranes and Comparison with the Pervaporation and Gas Permeation Properties
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Reverse Osmosis Performance of Organosilica Membranes and Comparison with the Pervaporation and Gas Permeation Properties

机译:有机硅膜的反渗透性能及其与渗透汽化和气体渗透性能的比较

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摘要

Hybrid organosilica membranes were successfully prepared using bis(triethoxysilyl)ethane (BTESE) and applied to reverse osmosis (RO) desalination. The organosilica membrane calcined at 300°C almost completely rejected salts and neutral solutes with low-molecular-weight. Increasing the operating pressure led to an increase in water flux and salt rejection, while the flux and rejection decreased as salt concentration increased. The water permeation mechanism differed from the viscous flow mechanism. Observed activation energies for permeation were larger for membranes with a smaller pore size, and were considerably larger than the activation energy for water viscosity. The organosilica membranes exhibited exceptional hydrothermal stability in temperature cycles up to 90°C. The applicability of the generalized solution-diffusion (SD) model to RO and pervaporation (PV) desalination processes were examined, and the quantitative differences in water permeance were accurately predicted by the application of generalized transport equations.
机译:使用双(三乙氧基甲硅烷基)乙烷(BTESE)成功制备了杂化有机硅膜,并将其用于反渗透(RO)脱盐。在300°C煅烧的有机硅膜几乎完全排斥低分子量的盐和中性溶质。操作压力的增加导致水通量和盐分截留率的增加,而通量和盐分截留率随盐浓度的增加而降低。透水机理不同于粘性流动机理。对于具有较小孔径的膜,观察到的渗透的活化能更大,并且比水粘度的活化能大得多。有机硅膜在高达90°C的温度循环中表现出出色的水热稳定性。研究了广义溶液扩散(SD)模型在RO和全蒸发(PV)脱盐过程中的适用性,并通过应用广义输运方程准确预测了水渗透率的数量差异。

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