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http://dx.doi.org/10.5572/KOSAE.2008.24.4.415

Operating Characteristics of 0.4 MW-Scale Gas Dispersion Type FGD Absorber  

An, Hi-Soo (Korea Electric Power Research Institute)
Kim, Ki-Hyoung (Korea Electric Power Research Institute)
Park, Seung-Soo (Korea Electric Power Research Institute)
Park, Kwang-Kyu (Korea Electric Power Research Institute)
Kim, Young-Ho (Department of Fine Chemical Engineering, Chungnam National University)
Publication Information
Journal of Korean Society for Atmospheric Environment / v.24, no.4, 2008 , pp. 415-422 More about this Journal
Abstract
This study was carried out to investigate the effect of operating and design conditions of gas dispersion type of absorber on $SO_2$ removal efficiency. pH difference between upper and lower part of gas dispersing plate of absorber was 0.2, which was relatively low. This was supposed that recirculation capacity of absorbing liquid between froth zone and reaction zone of absorber be increased by oxidation air injection through liquid riser which acted as liquid pump. Test results showed that $SO_2$ removal efficiency was more sensitive than absorber ${\Delta}P$. High $SO_2$ removal even at lower pH resulted from very low concentration of $HSO_3^-$ ion in absorbing liquid because of direct supply of dissolved oxygen into froth zone. 96% of $SO_2$ removal efficiency was obtained under the condition of absorber pH 5.2, flue gas flow rate of $1,530\;Nm^3/hr$, inlet $SO_2$ concentration of 800 ppm, absorber ${\Delta}P$ of 250mmAq. The following equation by a multiple linear regression was obtained to describe the relationship between $SO_2$ removal and operating variables. $$f=1-{\exp}(-1.3939+1.060pH+0.0139{\Delta}P-0.00267G-0.000064SO_2Conc.),\;R^2=0.9719$$
Keywords
FGD absorber$SO_2$ removal efficiency; Diameter; Absorber; L/G ratio;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
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