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Absorption removal of carbon dioxide in the presence of inert solid particles (flour powder)

 

作者: I‐Hung Liu,   Ching‐Yuan Chang,   Shin‐Min Shih,   I‐Chuan Chiu,   Hsiu‐Wen Chu,   Chi‐Hua Chen,  

 

期刊: Journal of the Chinese Institute of Engineers  (Taylor Available online 1993)
卷期: Volume 16, issue 5  

页码: 615-620

 

ISSN:0253-3839

 

年代: 1993

 

DOI:10.1080/02533839.1993.9677535

 

出版商: Taylor & Francis Group

 

关键词: carbon dioxide removal;gaseous pollutants absorption;isothermal absorption system;inert solid particles;green house effect

 

数据来源: Taylor

 

摘要:

An experimental analysis of the absorption removal of carbon dioxide with the presence of inert solid particles on the surface of the absorbent liquid is presented. A batch absorber with quiescent absorbent liquid has been applied to study the absorption removal of carbon dioxide by water in the isothermal system. The flour powder is introduced as the inert solid particles in the carbon dioxide absorption system. Tests with the flour powder in water are examined. The mass fluxes of carbon dioxide for the cases with and without the flour powder are then compared to elucidate the effects of inert solid particles on isothermal gas absorption. The results indicate a significant difference between these two cases for the concentrations of the flour powder in the absorbent liquid (WF) being in the range of experimental conditions, namely 0.001 to 0.03 g flour in 10 ml liquid. In general, the inert solid particles of the flour powder as the impurities in water with WF in the range of this study tend to decrease the carbon dioxide absorption rates for the experimental absorption system under investigation. Thus, various concentrations of inert solid particles cause various levels of surface resistance and affect the gas absorption rates. This kind of information is very useful for the gaseous pollutants removal that the impurities of inert solid particles contaminate the isothermal gas absorption system, and for the absorption removal of carbon dioxide associated with the control of the green house effect.

 

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