Numerical evaluation of the effectiveness of NOand NOgeneration during the NO ozonation process

被引:15
作者
Haiqiang Wang
Zhuokai Zhuang
Chenglang Sun
Nan Zhao
Yue Liu
Zhongbiao Wu
机构
[1] Department of Environment Engineering,Zhejiang University
[2] Zhejiang Provincial Engineering Research Center of Industrial Boiler,Furnace Flue Gas Pollution Control
关键词
Numerical simulation; O3; NO; N2O5; In-situ IR spectra;
D O I
暂无
中图分类号
X701 [废气的处理与利用];
学科分类号
083002 ;
摘要
Wet scrubbing combined with ozone oxidation has become a promising technology for simultaneous removal of SO2 and NOx in exhaust gas.In this paper,a new 20-species,76-step detailed kinetic mechanism was proposed between O3 and NOx.The concentration of N2O5 was measured using an in-situ IR spectrometer.The numerical evaluation results kept good pace with both the public experiment results and our experiment results.Key reaction parameters for the generation of NO2 and N2O5 during the NO ozonation process were investigated by a numerical simulation method.The effect of temperature on producing NO2 was found to be negligible.To produce NO2,the optimal residence time was1.25 sec and the molar ratio of O3/NO about 1.For the generation of N2O5,the residence time should be about 8 sec while the temperature of the exhaust gas should be strictly controlled and the molar ratio of O3/NO about 1.75.This study provided detailed investigations on the reaction parameters of ozonation of NOx by a numerical simulation method,and the results obtained should be helpful for the design and optimization of ozone oxidation combined with the wet flue gas desulfurization methods(WFGD) method for the removal of NOx.
引用
收藏
页码:51 / 58
页数:8
相关论文
共 16 条
[1]  
Investigation of heavy metal partitioning influenced by flue gas moisture and chlorine content during waste incineration[J]. Qinghai Li,Aihong Meng,Jinyan Jia,Yanguo Zhang Department of Thermal Engineering,Key Laboratory for Thermal Science and Power Engineering of the Ministry of Education of China,Tsinghua University,Beijing 100084,China..Journal of Environmental Sciences. 2010(05)
[2]  
Mechanisms and reaction pathways for simultaneous oxidation of NO x and SO 2 by ozone determined by in situ IR measurements[J] . Chenglang Sun,Nan Zhao,Zhuokai Zhuang,Haiqiang Wang,Yue Liu,Xiaole Weng,Zhongbiao Wu.Journal of Hazardous Materials . 2014
[3]   APPLICATION OF CHEMKIN AND COMSOL PROGRAMS IN THE CALCULATIONS OF CHEMICAL COMPOSITION OF NATURAL GAS COMBUSTION PRODUCTS [J].
Zajemska, Monika ;
Musial, Dorota ;
Poskart, Anna .
COMBUSTION SCIENCE AND TECHNOLOGY, 2014, 186 (02) :153-172
[4]   Kinetic interpretation on mercury oxidation and transformation in simulated flue gases [J].
Yang, H. ;
Hou, W. ;
Zhang, H. ;
Zhou, L. .
INTERNATIONAL JOURNAL OF ENVIRONMENTAL SCIENCE AND TECHNOLOGY, 2013, 10 (04) :689-696
[5]   Kinetic model of NOx ozonation and its experimental verification [J].
Skalska, Kinga ;
Miller, Jacek S. ;
Ledakowicz, Stanislaw .
CHEMICAL ENGINEERING SCIENCE, 2011, 66 (14) :3386-3391
[6]  
The implication of carbonaceous aerosol to the formation of haze: Revealed from the characteristics and sources of OC/EC over a mega-city in China[J] . Bing Hou,Guoshun Zhuang,Rong Zhang,Tingna Liu,Zhigang Guo,Ying Chen.Journal of Hazardous Materials . 2011 (1)
[7]  
Effect of different concentration levels of CO 2 and H 2 O on the oxidation of CO: Experiments and modeling[J] . María Abián,Jorge Giménez-López,Rafael Bilbao,María U. Alzueta.Proceedings of the Combustion Institute . 2010 (1)
[8]  
A dual-use of DBD plasma for simultaneous NO x and SO 2 removal from coal-combustion flue gas[J] . Journal of Hazardous Materials . 2010 (2)
[9]  
Selection of best impregnated palm shell activated carbon (PSAC) for simultaneous removal of SO 2 and NOx[J] . S. Sumathi,S. Bhatia,K.T. Lee,A.R. Mohamed.Journal of Hazardous Materials . 2009 (1)
[10]  
Energy, exergy and economic analysis of industrial boilers[J] . R. Saidur,J.U. Ahamed,H.H. Masjuki.Energy Policy . 2009 (5)