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Mass transfer modelling of hollow fiber membrane contactor for apple juice concentration using osmotic membrane distillation

机译:渗透膜蒸馏苹果汁浓度中空纤维膜接触器的传质造型

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The present research study is based on theoretical and experimental investigation of hydrophobic porous hollow fiber membrane contactor (HFMC) module. The mass transfer diffusional model was developed for osmotic membrane distillation (OMD) and applied in apple juice concentration. The mathematical model was developed, taking into consideration the resistance-in-series concept for the mass transfer of water vapor molecules across the hydrophobic HFMC. The model was adapted to include the pore geometry, dimensionless numbers and concentration variation due to viscosity. The water vapor transport model was then simulated in MATLAB (R) and successfully validated with the experimental data. The model was applied to study the effects of driving forces for mass transfer and membrane porosity. Process parameters like juice concentration, stripping solution concentration, and Reynolds number were also studied to evaluate their effect on the overall mass transfer coefficient and water vapor flux. The OMD experiments for the concentration of clarified apple juice were carried out in a laboratory-scale HFMC mini-module composed of two independent circuits, for stripping solution (CaCl2) and apple juice, respectively, in a total recycled mode. For the concentration of clarified apple juice, the evaporation flux ranged from 0.122 to 0.472 kgm(-2)h(-1) resulting in a juice concentration of 30 degrees Brix. The increase in pore diameter from 0.1 to 0.6 mu m resulted in an increase in the mass transfer coefficient from 1.57 x 10(-10) to 7.23 x 10(-10) ms(-1). Similarly, water vapor flux was increased from 0.02 to 0.50 kgm(-2)h(-1) when the activity coefficient was changed from 0.1 to 0.5. Moreover, the results indicated that if the experimental parameters are carefully controlled, the simulation results can be used to predict the OMD process efficiency.
机译:本研究基于疏水性多孔中空纤维膜接触器(HFMC)模块的理论和实验研究。为渗透膜蒸馏(OMD)开发了传质扩散模型,并施用于苹果汁浓度。开发了数学模型,考虑到疏水性HFMC中水蒸气分子传质的潜力型概念。该模型适于包括孔的几何形状,无量纲数和由于粘度引起的浓度变化。然后在Matlab(R)中模拟水蒸气传输模型,并用实验数据成功验证。应用该模型以研究驱动力对传质孔隙率的影响。还研究了果汁浓度,汽提溶液浓度和雷诺数等过程参数,以评估它们对整体传质系数和水蒸气通量的影响。澄清苹果汁浓度的OMD实验是在由两个独立电路组成的实验室标度HFMC迷你模块中进行,用于分别在总再循环模式中剥离溶液(CaCl 2)和苹果汁。对于澄清的苹果汁的浓度,蒸发通量范围为0.122至0.472kgm(-2)H(-1),导致汁浓度为30℃。孔径为0.1至0.6μm的增加导致质量转移系数的增加,从1.57×10(-10)至7.23×10(-10)ms(-1)。类似地,当活性系数从0.1至0.5改变时,水蒸气通量从0.02至0.50kgm(-2)h(-2)H(-1)增加。此外,结果表明,如果仔细控制实验参数,则可以使用模拟结果来预测OMD工艺效率。

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