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用于同时回收余热和冷凝水的润湿性改性纳米多孔陶瓷膜

Wettability modified nanoporous ceramic membrane for simultaneous residual heat and condensate recovery.

作者信息

Hu H W, Tang G H, Niu D

机构信息

MOE Key Laboratory of Thermo-Fluid Science and Engineering, School of Energy and Power Engineering, Xi'an Jiaotong University, Xi'an 710049, P.R. China.

出版信息

Sci Rep. 2016 Jun 7;6:27274. doi: 10.1038/srep27274.

Abstract

Recovery of both latent heat and condensate from boiler flue gas is significant for improving boiler efficiency and water conservation. The condensation experiments are carried out to investigate the simultaneous heat and mass transfer across the nanoporous ceramic membranes (NPCMs) which are treated to be hydrophilic and hydrophobic surfaces using the semicontinuous supercritical reactions. The effects of typical parameters including coolant flow rate, vapor/nitrogen gas mixture temperature, water vapor volume fraction and transmembrane pressure on heat and mass transfer performance are studied. The experimental results show that the hydrophilic NPCM exhibits higher performances of condensation heat transfer and condensate recovery. However, the hydrophobic modification results in remarkable degradation of heat and condensate recovery from the mixture. Molecular dynamics simulations are conducted to establish a hydrophilic/hydrophobic nanopore/water liquid system, and the infiltration characteristics of the single hydrophilic/hydrophobic nanopore is revealed.

摘要

从锅炉烟气中回收潜热和冷凝水对于提高锅炉效率和节约用水具有重要意义。进行了冷凝实验,以研究通过半连续超临界反应处理成亲水和疏水表面的纳米多孔陶瓷膜(NPCM)的同时传热传质情况。研究了冷却剂流速、蒸汽/氮气混合气体温度、水蒸气体积分数和跨膜压力等典型参数对传热传质性能的影响。实验结果表明,亲水性NPCM表现出更高的冷凝传热和冷凝水回收性能。然而,疏水改性导致混合物的热回收和冷凝水回收显著降低。进行了分子动力学模拟,以建立亲水/疏水纳米孔/水液体系统,并揭示了单个亲水/疏水纳米孔的渗透特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b88/4895154/f233a4f290d3/srep27274-f1.jpg

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