Applied thermal engineering2022,Vol.20912.DOI:10.1016/j.applthermaleng.2022.118240

Characteristics of air-liquid heat and mass transfer in a bubble column humidifier

Eder, Elias Hiller, Sandro Brueggemann, Dieter Preissinger, Markus
Applied thermal engineering2022,Vol.20912.DOI:10.1016/j.applthermaleng.2022.118240

Characteristics of air-liquid heat and mass transfer in a bubble column humidifier

Eder, Elias 1Hiller, Sandro 1Brueggemann, Dieter 2Preissinger, Markus1
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作者信息

  • 1. Vorarlberg Univ Appl Sci
  • 2. Univ Bayreuth
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Abstract

Bubble columns are recently used for the humidification of air in water treatment systems and fuel cells. They are well applicable due to their excellent heat and mass transfer and their low technical complexity. To design and operate such devices with high efficiency, the humidification process and the impact of the operating parameters need to be understood to a sufficient degree. To extend this knowledge, we use a refined and novel method to determine the volumetric air-liquid heat and mass transfer coefficients and the humidifier efficiency for various parametric settings. The volumetric transfer coefficients increase with both of the superficial air velocity and the liquid temperature. It is further shown that the decrease of vapor pressure with an increase of the salinity results in a corresponding decrease in the outlet humidity ratio. In contrast to previous studies, liquid heights smaller than 0.1 m are investigated and significant changes in the humidifier efficiency are seen in this range. We present the expected humidifier efficiency with respect to the superficial air velocity and the liquid height in an efficiency chart, such that optimal operating conditions can be determined. Based on this efficiency chart, recommendations for industrial applications as well as future scientific challenges are drawn.

Key words

Bubble column humidifier/Humidification-dehumidification/Desalination/Air-liquid heat transfer/Air-liquid mass transfer/DEHUMIDIFICATION DESALINATION/TRANSFER COEFFICIENTS/PERFORMANCE ANALYSIS/WATER/PREDICTION/DESIGN/H-2/HOT

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出版年

2022
Applied thermal engineering

Applied thermal engineering

EISCI
ISSN:1359-4311
被引量7
参考文献量37
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