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Application of microwave heating to pervaporation: A case study for separation of ethanol-water mixtures

机译:微波加热在渗流中的应用 - 一种分离乙醇 - 水混合物的案例研究

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Membrane pervaporation experiments for dewatering of water-ethanol mixtures were conducted, using a polymeric hydrophilic membrane, under microwave and conventional heating in a multimode microwave oven and a convection oven, respectively. Three feed temperatures (33.5, 45.5 and 51.5 °C) and two feed compositions (5.5wt% and 20wt% water in the feed) were considered. At 20wt% water content, higher water fluxes through the membrane were obtained in the convection oven. At lower water content in the feed (5.5 wt%), the opposite effect was observed; the water fluxes were higher under microwave heating over the considered temperature range. These differences may arise from the different dielectric properties and consequently thermal behaviour of the feed mixtures under microwave heating. Microwave coupling with ethanol is stronger than with water. Moreover, unlike water, the dielectric loss factor of ethanol increases with temperature, which makes microwave dissipation preponderant in hot areas. Hence, high ethanol concentrations in the feed can easily induce thermal gradients.
机译:使用聚合物亲水膜在微波和多模微波炉和对流烘箱中进行膜渗透水 - 乙醇混合物脱水的膜渗透试验。考虑了三个进料温度(33.5,45.5和51.5℃)和两种进料组合物(进料中的5.5wt%和20wt%的水)。在20wt%的水含量下,在对流烘箱中获得通过膜的较高的水通量。在饲料中较低的含水量(5.5wt%),观察到相反的效果;在考虑的温度范围内微波加热下水助熔剂较高。这些差异可能来自不同的电介质特性,并且因此在微波加热下的饲料混合物的热行为。与乙醇微波偶联比水强。此外,与水不同,乙醇的介电损耗因子随温度的增加,这使得微波耗散优势在热区域。因此,进料中的高乙醇浓度可以容易地诱导热梯度。

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