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PERFORMANCE OF AIR GAP MEMBRANE DISTILLATION UNIT FOR WATER DESALINATION

机译:空气脱盐用气隙膜蒸馏装置的性能

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Due to water scarcity in the Arabic gulf region, water desalination technologies are considered extremely important. The present work represents a fundamental study on the effect of basic operating and design variables on the flux of an air gap membrane distillation (AGMD) unit for water desalination. The flat sheet, channeled air gap membrane distillation module was designed and manufactured locally. The effect of feed flow rate, feed temperature, coolant water temperature, the air gap width, and the water salinity on the module flux are investigated. Analytical model for heat and mass transfer is used to predict the flux and the model results are compared to the experimental ones. Results showed that the technique has good potential to be used for water desalination. The permeate flux is increased by increasing feed flow rate, feed temperature, decreasing the air gap width, decreasing coolant temperature, and decreasing salinity of feed water. For a given feed flow rate, the width of the air gap and the feed water temperature are found to be the most effective parameters in increasing the distillate flux. Predicting the permeate flux with analytical models for heat and mass transfer showed good agreement with experimental results.
机译:由于阿拉伯海湾地区水资源匮乏,海水淡化技术被认为极为重要。目前的工作代表了对基本操作和设计变量对用于海水淡化的气隙膜蒸馏(AGMD)装置通量的影响的基础研究。平板式带通道气隙膜蒸馏模块是本地设计和制造的。研究了进料流量,进料温度,冷却水温度,气隙宽度和水盐度对组件通量的影响。使用传热和传质的分析模型来预测通量,并将模型结果与实验结果进行比较。结果表明,该技术具有很好的用于海水淡化的潜力。通过增加进料流速,进料温度,减小气隙宽度,降低冷却剂温度和降低进料水的盐度来增加渗透通量。对于给定的进料流速,发现气隙宽度和进水温度是增加馏分通量的最有效参数。用传热传质分析模型预测渗透通量与实验结果吻合良好。

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