A model on an entrained bed-bubbling bed process for CO2 capture from flue gas

被引:11
作者
Choi, Jeong-Hoo [1 ]
Yi, Chang-Keun [2 ]
Jo, Sung-Ho [2 ]
机构
[1] Konkuk Univ, Dept Chem Engn, Seoul 143701, South Korea
[2] Korea Inst Energy Res, Taejon 305343, South Korea
关键词
CO2; Capture; Model; Fluidized Bed; Entrained Bed; Sodium Carbonate; CARBON-DIOXIDE CAPTURE; SORBENT;
D O I
10.1007/s11814-010-0477-z
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A simplified model has been developed to investigate effects of important operating parameters on performance of an entrained-bed absorber and bubbling-bed regenerator system collecting CO2 from flue gas. The particle population balance was considered together with chemical reaction to determine the extent of conversion in both absorber and regenerator. The calculated CO2 capture efficiency agreed with the measured value reasonably well. Effects of absorber parameters - temperature, gas velocity, static bed height, moisture content of feed gas on CO2 capture efficiency - have been investigated in a laboratory scale process. The CO2 capture efficiency decreased as temperature or gas velocity increased. However, it increased with static bed height or moisture concentration. The CO2 capture efficiency was exponentially proportional to each parameter. Based on the absolute value of exponent of the parameter, the effect of gas velocity, static bed height, and moisture content was one-half, one-third, and one-fourth as strong as that of temperature, respectively.
引用
收藏
页码:1144 / 1147
页数:4
相关论文
共 50 条
  • [41] Sensitivity analysis of CO2 capture process in cyclic fluidized-bed with regeneration of solid sorbent
    Ju, Youngsan
    Oh, Hyun-Taek
    Lee, Chang-Ha
    CHEMICAL ENGINEERING JOURNAL, 2020, 379
  • [42] Recent developments and consideration issues in solid adsorbents for CO2 capture from flue gas
    Nie, Lijuan
    Mu, Yuanyuan
    Jin, Junsu
    Chen, Jian
    Mi, Jianguo
    CHINESE JOURNAL OF CHEMICAL ENGINEERING, 2018, 26 (11) : 2303 - 2317
  • [43] Guanidinylated poly(allylamine) supported on mesoporous silica for CO2 capture from flue gas
    Alkhabbaz, Mustafa A.
    Khunsupat, Ratayakorn
    Jones, Christopher W.
    FUEL, 2014, 121 : 79 - 85
  • [44] Amine-immobilized HY zeolite for CO2 capture from hot flue gas
    Liang, Wanqiao
    Huang, Jihuan
    Xiao, Penny
    Singh, Ranjeet
    Guo, Jining
    Dehdari, Leila
    Li, Gang Kevin
    CHINESE JOURNAL OF CHEMICAL ENGINEERING, 2022, 43 : 335 - 342
  • [45] Study on the performance of CO2 capture from flue gas with ceramic and PTFE membrane contactors
    Fu, Hongming
    Xue, Kaili
    Li, Zhaohao
    Zhang, Heng
    Gao, Dan
    Chen, Haiping
    ENERGY, 2023, 263
  • [46] Screening of Amino Acids and Surfactant as Hydrate Promoter for CO2 Capture from Flue Gas
    Pandey, Jyoti Shanker
    Daas, Yousef Jouljamal
    von Solms, Nicolas
    PROCESSES, 2020, 8 (01)
  • [47] Recent developments on polymeric membranes for CO2 capture from flue gas
    Han, Yang
    Ho, W. S. Winston
    JOURNAL OF POLYMER ENGINEERING, 2020, 40 (06) : 529 - 542
  • [48] Simulation of CO2 Capture Process in Flue Gas from Oxy-Fuel Combustion Plant and Effects of Properties of Absorbent
    Huang, Xiaoting
    Ai, Ning
    Li, Lan
    Jiang, Quanda
    Wang, Qining
    Ren, Jie
    Wang, Jiawei
    SEPARATIONS, 2022, 9 (04)
  • [49] Simulated moving bed adsorption process based on a polyethylenimine-silica sorbent for CO2 capture with sensible heat recovery
    Jung, Wonho
    Park, Junhyung
    Won, Wangyun
    Lee, Kwang Soon
    ENERGY, 2018, 150 : 950 - 964
  • [50] Economic Evaluations of CO2 Capture Process from Power Plant Flue Gas Using Dry Sorbents
    Shin, Byung Chul
    Kwak, Hyun
    Lee, Kwang Min
    KOREAN CHEMICAL ENGINEERING RESEARCH, 2012, 50 (04): : 646 - 653