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Fluoride removal from aqueous solution by direct contact membrane distillation: theoretical and experimental studies

机译:通过直接接触膜蒸馏从水溶液中除氟的理论和实验研究

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摘要

Direct contact membrane distillation (DCMD) process using polyvinylidene fluoride (PVDF) membrane was used for fluoride removal from aqueous solution. This study has been carried out on heat and mass transfer analyses in DCMD. The dusty-gas model was used to analyze the mass transfer mechanism and to calculate the permeate flux. The heat transfer is analyzed based on energy balance, and the different layers are considered as a series of thermal resistances. Mass transfer analysis showed that the transition Knudsen-molecular diffusion is the dominant mechanism to describe the transport of water vapor through the pores of the PVDF membrane. The most significant operating parameter is the feed temperature. The permeate increases sensitively with feed temperature and velocity, and it shows insignificant change with feed salts concentration. Heat transfer analysis showed the conduction through the matrix of the membrane presents the major part of available energy. The increasing feed temperature leads to increase thermal efficiency (TE) and decrease temperature polarization coefficient (TPC). The experimental results are in good agreement with theoretical values. Therefore, it is suggested to work at high feed temperature, which will benefit both the thermal efficiency and permeate flux. The experimental results proved that DCMD process is able to produce almost fluoride-free water suitable for many beneficial uses.
机译:使用聚偏二氟乙烯(PVDF)膜的直接接触膜蒸馏(DCMD)工艺用于从水溶液中去除氟。这项研究已经在DCMD中进行了传热和传质分析。粉尘气体模型用于分析传质机理并计算渗透通量。基于能量平衡来分析传热,并且将不同的层视为一系列热阻。传质分析表明,过渡努氏分子扩散是描述水蒸气通过PVDF膜孔传输的主要机理。最重要的操作参数是进料温度。渗透物随进料温度和速度而敏感地增加,并且随进料盐浓度的变化不明显。传热分析表明,通过膜基质的传导占了可用能量的主要部分。进料温度升高导致热效率(TE)升高,温度极化系数(TPC)降低。实验结果与理论值吻合良好。因此,建议在较高的进料温度下工作,这将有利于热效率和渗透通量。实验结果证明,DCMD工艺能够生产出几乎无氟的水,适用于许多有益用途。

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