Copyright (c) 2014 Jin-Xi Zhou*, Song Zhou, Dian-Tao Liu
This work is licensed under a Creative Commons Attribution 4.0 International License.
Simultaneous Removal of SO2 and NOX by Wet Scrubbing Using NaOH Solutions
Corresponding Author(s) : Jin-Xi Zhou*
Asian Journal of Chemistry,
Vol 26 No Supplementary Issue
Abstract
In this paper, the study on the effect of desulfurization and denitration in a counter current packed column using NaOH solutions was introduced. The desulfurization efficiency was high and the factors of denitration were complex. The factors included NaOH solutions concentration, pH value, sulfur dioxide concentration. The mechanism of desulfurization and denitration using NaOH solutions were deduced. The desulfurization efficiency was about 100 % and the denitration efficiency was lower. In this paper, the better conditions for simultaneous desulfurization and denitration were determined. The experimental results show that the simultaneous desulfurization and denitration are available and the results can meet the increasingly stringent emissions regulations of International Maritime Organization.
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- U. Breitling, Sustainable Shipping and Port Development, Asean-German Technical Cooperation, pp. 2-4 (2010).
- M. Schultes, Chem. Eng. Technol., 21, 201 (1998).
- H. Hikita, S. Asai and T. Tsuji, AIChE J., 23, 538 (1977).
- S. Kaiser, K. Weigl, K. Spiess-Knafl, C. Aichernig and A. Friedl, Chem. Eng. Process., 39, 425 (2000).
- C. Brogren, H.T. Karlsson and I. Bjerle, Chem. Eng. Technol., 20, 396 (1997).
- O. Tokunaga and N. Suzuki, Radiat. Phys. Chem. (1977), 24, 145 (1984).
- K.F. Chan, Ph.D. Dissertation, Department of Chemical Engineering, University of Windsor, Ontario, Canada (1991).
- N. Nakicenovic and A. Grubler, General Energy Perspectives, Cambridge University Press, U.K. (1998).
- Swedish Environmental Protection Agency, GHG Emission from Inter-national Shipping and Aviation, ECON Centre for Economic Analysis, Norway (2003).
- B.P. Company, BP Statistical Review of World Energy, BP Company, USA (2004).
- Genesis Engineering Inc, Levelton Engineering Ltd, Non-Road Diesel Emission Reduction Study, Genesis Engineering Inc., Israel (2003).
References
U. Breitling, Sustainable Shipping and Port Development, Asean-German Technical Cooperation, pp. 2-4 (2010).
M. Schultes, Chem. Eng. Technol., 21, 201 (1998).
H. Hikita, S. Asai and T. Tsuji, AIChE J., 23, 538 (1977).
S. Kaiser, K. Weigl, K. Spiess-Knafl, C. Aichernig and A. Friedl, Chem. Eng. Process., 39, 425 (2000).
C. Brogren, H.T. Karlsson and I. Bjerle, Chem. Eng. Technol., 20, 396 (1997).
O. Tokunaga and N. Suzuki, Radiat. Phys. Chem. (1977), 24, 145 (1984).
K.F. Chan, Ph.D. Dissertation, Department of Chemical Engineering, University of Windsor, Ontario, Canada (1991).
N. Nakicenovic and A. Grubler, General Energy Perspectives, Cambridge University Press, U.K. (1998).
Swedish Environmental Protection Agency, GHG Emission from Inter-national Shipping and Aviation, ECON Centre for Economic Analysis, Norway (2003).
B.P. Company, BP Statistical Review of World Energy, BP Company, USA (2004).
Genesis Engineering Inc, Levelton Engineering Ltd, Non-Road Diesel Emission Reduction Study, Genesis Engineering Inc., Israel (2003).