Have a personal or library account? Click to login
Optimization the operation parameters of SDA desulfurization tower by flow coupling chemical reaction model Cover

Optimization the operation parameters of SDA desulfurization tower by flow coupling chemical reaction model

Open Access
|Mar 2020

References

  1. Feng, Yu-zhi. & Wang, Ying-gang. (2000). The harms and preservation of sulfur dioxide to industrial workers. On-Ferrous Mining and Metallurgy. 1, 47–48.
  2. 2. Rao, Zhi-jun. (2005). Research on rotary spray technology and its electromechanical system. Tianjin University. DOI: 10.7666/d.y848955.
  3. 3. Liu, Yong-feng, Wei, Chuan-wen & Zhang, Xu. (2008). Suitable sintered flue gas desulfurization for SDA technology. China Steel. Pap. (5), 32–33. DOI: 10.3969/j.issn.1672-5115.2008.05.009.
  4. 4. Lan, Guo-qian, Liu, Jian-qiu & Zhang, Jiang-wei. (2014). Present situation and trends of the sintering flue gas Desulphurization in iron and steel industry. China Enwiron. Protec. Ind. (6), 42–46. DOI: 10.3969/j.issn.1006-5377.2014.06.012.
  5. 5. Hans, T., Karlsson & Jonas, Klingspor. (1987). Tentative modelling of spray-dry scrubbing of SO2. Chem. Engin. Technol. 10(1), 104–112. DOI: 10.1002/ceat.270100114.10.1002/ceat.270100114
  6. 6. Hill, F.F. & Zank, J. (2000). Flue gas desulphurization by spray dry absorption. Chem. Eng. Proce. 39(1), 45–52. DOI: 10.1016/S0255-2701(99)00077-X.10.1016/S0255-2701(99)00077-X
  7. 7. Gullett, B.K. (1987). Fundamental process involved in SO2 capture by calcium-based adsorbents. Fourth Annual Pittsburgh coal conference. OSTI: 5790586.
  8. 8. Xu, G., Guo, Q., Kaneko, T. & et al. (2000). A new semi-dry desulfurization process using a powder-particle spouted bed. Adv. Enwiron. Res. 4(1), 9–18. DOI: 10.1016/S1093-0191(00)00003-4.10.1016/S1093-0191(00)00003-4
  9. 9. Dantuluri, S.R., Davis, W.T., Counce, R.M. & et al. (1990). Mathematical model of sulfur dioxide absorption into a calcium hydroxide slurry in a spray dryer. Chem. Engin. Commun. 25(13–15), 1843–1855. DOI: 10.1080/01496399008050428.10.1080/01496399008050428
  10. 10. Wentz, T.H. & Thygeson, J.R. (1979). Handbook of separation technique for chemical engineers, chapter 4.10, MaGraw-Hill. DOI: 10.1002/aic.690260238.10.1002/aic.690260238
  11. 11. Ranz, W.F. & Marshall, W.R. (1952). Evaporation from drops. Chem. Engin. 48(3), 141–146. DOI:
  12. 12. Partridge, G.P., Davis, W.T. & Robert, M. (1990). Counce and Gregory D. Reed. A mechanistically based mathematical model of sulfur dioxide absorption into a calcium hydroxide slurry in a spray dryer. Chem. Engin. Commun. 96(8), 97–112. DOI: 10.1080/00986449008911485.10.1080/00986449008911485
  13. 13. And, H.M.Y. & Sang, S.K. (2000). Experimental study on the spray characteristics in the Spray Drying Absorber. Environ. Sci. Technol. 34(21), 4582–4586. DOI: 10.1021/es001104c.10.1021/es001104c
  14. 14. Keener, T.C., Wang, J. & Khang, S.J. (1998). Advances in spray drying desulfurization for high-sulfur coals. Dry scrubbing technologies for flue gas desulfurization. Springer US. Pap. 607–690. DOI: 10.1007/978-1-4615-4951-2_8.10.1007/978-1-4615-4951-2_8
  15. 15. Cheng, Ming-gong & Zhi-You-gang. (2000). Theoretical analysis of desulfurization influence factors of flue gas. Jiangsu Environ. Sci. Technol. 13(1), 1–3. DOI: CNKI:SUN:JSHJ.0.2000-01-000.
  16. 16. Kim, H. & Sung, N. (2003). The effect of ambient pressure on the evaporation of a single droplet and a spray. Combus. Flame. 135(3), 261–270. DOI: 10.1016/S0010-2180(03)00165-2.10.1016/S0010-2180(03)00165-2
  17. 17. Kang, Mei-qiang. (2013). Study on flue gas desulfurization wastewater duct evaporation treatment system design and experiment. Chongqing University. DOI: 10.7666/d.D354464.
  18. 18. Han, Fang-liang, Li, Guo-hua & Xu, Ning. (2006). Parameters simulation of flow field in spray drying flue gas desulfurization tower. China Water Transport. 6(10), 66–68. DOI: CNKI:SUN:SYZB.0.2006-10-029.
  19. 19. Scala, F., D’Ascenzo, M. & Lancia, A. (2004). Modeling flue gas desulfurization by spray-dry absorption. Separ. Purfic. Technol. 34(1), 143–153. DOI: 10.1016/S1383-5866(03)00188-6.10.1016/S1383-5866(03)00188-6
  20. 20. Karlsson, H.T. & Klingspor, J. (1987). Tentative modelling of spray-dry scrubbing of SO2. Chem. Eng. Technol. 10(1), 104–112. DOI: 10.1002/ceat.270100114.10.1002/ceat.270100114
  21. 21. Scala, F. & D’Ascenzo, M. (2002). Absorption with instantaneous reaction in a droplet with sparingly soluble fines. Aiche Journal. 48(8), 1719–1726. DOI: 10.1002/aic.690480813.10.1002/aic.690480813
  22. 22. Chen, Jian-zhong. (2017). Study on coke oven desulfurization and the reheat of sintering flue gas before denitrification. Zhejiang University.
  23. 23. Wang, Nai-hua. (2001). Experimental and mechanism analysis of a novel semi-dry flue gas desulfurization. Zhejiang University.
  24. 24. Qin, Lin-bo & Han, Jun. (2017). Simultaneous removal of SO2 and PAHs by adding calcium-based additives during sewage sludge incineration in a fluidized bed incinerator. J. Mater. Cycles Waste Manag. 19(3), 1061–1068. DOI: 10.1007/s10163-017-0592-6.10.1007/s10163-017-0592-6
  25. 25. Qin, Lin-bo & Han, Jun. (2016). Experimental study on SO2 removal during novel integrated desulfurization process. Fres. Environ. Bull. 25(11), 4561–4565. DOI: 10.1142/9789813143401_0056.10.1142/9789813143401_0056
  26. 26. Liu, Huan. (2016). Co-production of clean syngas and ash adsorbent during sewage sludge gasification: Synergistic effect of Fenton peroxidation and CaO conditioning. Apll. Energy. 179, 1062–1068. DOI: 10.1016/j.apenergy.2016.07.06310.1016/j.apenergy.2016.07.063
  27. 27. Qin, Lin-bo & Han, Jun. (2017). Enhancing SO2 removal efficiency by lime modified with sewage sludge in a novel integrated desulfurization process. Environ. Protec. Engin. 43(4), 17–27. DOI:10.37190/epe170402
  28. 28. Wang, Fu-jun. (2004). Computational fluid dynamics analysis: principles and applications of CFD software. Tsinghua University Press, Beijing.
  29. 29. Cheng, W.C., Liu, C.H. & Leung, D.Y.C. (2009). On the correlation if air and pollutant exchange for street canyons in combined wind-buoyancy-driven flow. Atmosp. Environ. 43(24), 3682–3690. DOI: 10.1016/j.atmosenv.2009.04.054.10.1016/j.atmosenv.2009.04.054
  30. 30. Gu Bing, He Shen-fu & Jiang Chuang-ye. (2013). Application of spray drying absorption (SDA) in desulphurization of sintering flue gas. Environ. Engin. 31(2), 53–56. DOI: 10.13205/j.hjgc.201302015.
  31. 31. ANSYS ICEM CFD user guide. (2016). Ansys Inc.
  32. 32. ANSYS CFX user guide. (2016). Ansys Inc.
  33. 33. Dantuluri, S.R., Davis, W.T., Counce, R.M. & et al. (1990). Mathematical model of sulfur dioxide absorption into a calcium hydroxide slurry in a spray dryer. Chem. Engin. Commun. 25(13–15), 1843–1855. DOI: 10.1080/01496399008050428.10.1080/01496399008050428
Language: English
Page range: 35 - 45
Published on: Mar 17, 2020
Published by: West Pomeranian University of Technology, Szczecin
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2020 Dan Mei, Junjie Shi, Yuzheng Zhu, Xuemei Xu, Futang Xing, Ling Shi, published by West Pomeranian University of Technology, Szczecin
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.