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Transport Analysis of an Air Gap Membrane Distillation (AGMD) Process

机译:气隙膜蒸馏(AGMD)过程的输运分析

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Membrane distillation (MD) desalination is an emerging technology for fresh water production. This process incorporates phase change and transport of vapour through a hydrophobic membrane due to difference in vapour pressure across the membrane. The results from experimental studies and the 1 dimensional transport analyses of the heat and mass transfer processes on an air gap MD (AGMD) unit are presented in this paper. The effects of different operating variables including feed and coolant temperatures, air gap, membrane support mesh size, feed concentration and feed and coolant flow rates were investigated. Mass transport through membrane, membrane support, air gap and condensation on the coolant plate has been analysed and expression for global mass transfer coefficient has been derived. The maximum distillate flux achieved was 5.11 kg/m2hr at a feed temperature of 60~C, coolant temperature of 10~C and an air gap of 2.5 mm. Per kW of energy input a 2.32 kg/m2hr flux was obtained. Feed temperature and air gap width were found to have significant influence on the performance of the membranes.
机译:膜蒸馏(MD)脱盐是一种用于生产淡水的新兴技术。由于跨膜的蒸气压的差异,该过程结合了相变和蒸气通过疏水膜的传输。本文介绍了在气隙MD(AGMD)单元上进行的传热和传质过程的实验研究和一维输运分析的结果。研究了不同操作变量的影响,包括进料和冷却液温度,气隙,膜支撑筛孔尺寸,进料浓度以及进料和冷却液流速。分析了通过膜,膜支撑,气隙和冷却板上的冷凝物的传质,并得出了整体传质系数的表达式。进料温度为60〜C,冷却液温度为10〜C,气隙为2.5 mm时,最大馏出流量为5.11 kg / m2·hr。每输入kW的能量获得2.32 kg / m2hr的通量。发现进料温度和气隙宽度对膜的性能有显着影响。

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