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Heat exchange and water recovery experiments of flue gas with using nanoporous ceramic membranes

机译:纳米多孔陶瓷膜对烟气的热交换和水回收实验

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摘要

The application of a 20 nm pore-sized porous ceramic membrane for condensation heat transfer in artificial flue gas was presented in this work, and the phenomenon of capillary condensation was investigated. A parametric study was conducted to illustrate the behavior of heat transfer and water recovery by varying the parameters of feed gas, cooling water and vacuum in water side. Results indicate that the amount of recovered water and heat increase with the growth of the feed gas flow rate, feed gas temperature, relative humidity, but decrease with the increase of cooling water inlet temperature. Within a certain range of vacuum (above -5 kPa), changing the cooling water flux has little influence on water recovery. The water recovery rate of the module can be up to above 80% and the heat recovery efficiency can be up to above 40% as well, using the low temperature cooling water. These values can both reach 90% in proper conditions. In addition, when the cooling water temperature is higher than the feed gas dew point, the water recovery rate can still reach above 20% with the help of capillary condensation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种20 nm孔径的多孔陶瓷膜在人工烟气中冷凝传热的应用,并研究了毛细管冷凝现象。通过改变进料气,冷却水和水侧真空的参数,进行了参数研究来说明传热和水回收的行为。结果表明,回收水和热量随着进料气流量,进料气温度,相对湿度的增加而增加,但随着冷却水入口温度的增加而减少。在一定真空度(-5 kPa以上)内,改变冷却水通量对水的回收率影响很小。使用低温冷却水,模块的水回收率可高达80%以上,热回收效率也可高达40%以上。在适当的条件下,这些值都可以达到90%。另外,当冷却水温度高于进料气体露点时,借助于毛细管冷凝,水的回收率仍可达到20%以上。 (C)2016 Elsevier Ltd.保留所有权利。

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