首页> 外文会议>International Congress on Membranes and Membrane Processes (ICOM 2002) Vol.4 (Desalination Vol.147) Jul 7-12, 2002 Toulouse, France >Mathematical modeling of influence of porous structure a membrane on its vapour-conductivity in the process of membrane distillation
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Mathematical modeling of influence of porous structure a membrane on its vapour-conductivity in the process of membrane distillation

机译:膜蒸馏过程中膜的多孔结构对其蒸气电导率影响的数学模型

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Membrane distillation (MD) is a perspective method of separation and concentration of inorganic aqueous solutions. The driving force of MD is temperature difference on both sides of a hydrophobic porous membrane, which separates two aqueous solutions with different temperatures and concentrations. The coefficient of vapor conductivity is one of more important parameters of water vapor transfer through hydrophobic microporous membrane. The influence of membrane porous structure on vapor conductivity coefficient was studied theoretically using the pore network as a model of porous medium. The pore networks were considered as a long and straight cylindrical capillaries arranged around the bonds of two- or three-dimensional lattices with fixed coordination number z for lognormal pore size distribution. The effective-medium theory (EMT) and smooth field approximation (SFA) were used for describing of mass-transfer through the porous membrane. It was shown that the vapor conductivity coefficient value decreases with increasing of the pore dispersion d and decreasing of mean radius porous , grows with increasing of coordination number z. As a result, MD process is more effective using the porous membrane with narrow pore size distribution.
机译:膜蒸馏(MD)是分离和浓缩无机水溶液的一种透视方法。 MD的驱动力是疏水性多孔膜两侧的温差,该温度差将温度和浓度不同的两种水溶液分开。蒸气传导系数是水蒸气通过疏水微孔膜转移的更重要参数之一。以孔网络为多孔介质模型,从理论上研究了膜的多孔结构对水蒸气传导系数的影响。孔网络被认为是围绕对数正态孔径分布具有固定配位数z的二维或三维晶格键周围排列的长而直的圆柱形毛细管。有效介质理论(EMT)和光滑场近似(SFA)用于描述通过多孔膜的传质。结果表明,水蒸气的电导系数值随孔隙分散度d的增加而减小,平均半径的减小,随配位数z的增加而增大。结果,使用孔径分布窄的多孔膜,MD法更有效。

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