A Study on CO2 Removal by Chemical Absorption Using Structured Packing 


Vol. 9,  No. 1, pp. 43-48, Mar.  2003


PDF
  Abstract

As a result of study on factor affecting absorption efficiency using the structured packing, Mellapak N. 250Y for the chemical absorption of CO2 that cause global warming due to development of industry, it is shown that Mellapak N. 250Y has lower pressure drop and superior efficiency of mass transfer than 25mm Pall ring. Also, in the absorption process, it produces high efficiency in the increase of load and concentration of absorption liquid and produces low efficiency in the increase of temperature. In the effect of overall mass transfer coefficient for 15% MEA on the temperature variation of absorbent, when absorbent temperature for 15% MEA varied as 25, 50, 80°C, overall mass transfer coefficients were shown as 0.83, 1.00, 0.90 kmol/m3-h-kPa.

  Statistics
Cumulative Counts from November, 2022
Multiple requests among the same browser session are counted as one view. If you mouse over a chart, the values of data points will be shown.


  Cite this article

[IEEE Style]

K. JH, K. HH, K. JH, "A Study on CO2 Removal by Chemical Absorption Using Structured Packing," Clean Technology, vol. 9, no. 1, pp. 43-48, 2003. DOI: .

[ACM Style]

Kim JH, Kim HH, and KIM JH. 2003. A Study on CO2 Removal by Chemical Absorption Using Structured Packing. Clean Technology, 9, 1, (2003), 43-48. DOI: .