Experimental and Modelling Study on Emission of Volatile Nitrogen Derived NO during Pressured Oxy-fuel Combustion under Wet Flue Gas Environment

被引:0
作者
ZAN Haifeng [1 ]
CHEN Xiaoping [1 ]
PAN Suyang [1 ]
GENG Pengfei [1 ]
LIU Daoyin [1 ]
MA Jiliang [1 ]
LIANG Cai [1 ]
机构
[1] Key Laboratory of Energy Thermal Conversion and Control of Ministry of Education,School of Energy&Environment,Southeast University
关键词
D O I
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中图分类号
TK16 [燃料与燃烧]; X701 [废气的处理与利用];
学科分类号
080702 ; 083002 ;
摘要
Pressurised oxy-fuel combustion(POFC) is a clean and efficient combustion technology with great potential.Due to the recycling of flue gas,the concentration of steam in the flue gas is higher than that of conventional combustion,which enriches the free radical pool in the flue gas and thus affects the emission of gaseous pollutants.Therefore,further research into the effect of high steam concentrations on NOx emission mechanisms in POFC is necessary.In this work,a fixed-bed reactor was used to conduct combustion experiments of volatiles and combined with chemical kinetic models to study the NO release characteristics for different pressures and steam concentrations in an O2/CO2atmosphere at 800℃/900℃ temperature.The results of the study indicated that the volatile nitrogen comes from the pyrolysis of part of pyrrole,pyridine,and all quaternary nitrogen in coal.The increase in temperature promoted the formation of NO during combustion.Higher pressure affects the main reaction pathway for NO formation,promoting NO consumption by HCCO and C2O groups while enhancing the overall NO reduction.Steam promoted NO consumption by NCO.In addition,steam increased the amount of H/OH groups during the reaction,which affected both NO formation and consumption.However,from the overall effect,the steam still inhibits the emission of NO.
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页码:1750 / 1757
页数:8
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  • [1] Rahman Zia ur,Wang Xuebin,Zhang Jiaye,Yang Zhiwei,Dai Gaofeng,Verma Piyush,Mikulcic Hrvoje,Vujanovic Milan,Tan Houzhang,Axelbaum Richard L..Nitrogen evolution, NOX formation and reduction in pressurized oxy coal combustion[J].Renewable and Sustainable Energy Reviews,2022
  • [2] Vodička Matěj,Hrdlička Jan,Skopec Pavel.Experimental study of the NOX reduction through the staged oxygen supply in the oxy-fuel combustion in a 30 kWth bubbling fluidized bed[J].Fuel,2021
  • [3] Xiaorui Liang,Qinhui Wang,Zhongyang Luo,Eric Eddings,Terry Ring,Simin Li,Peng Yu,Jiqing Yan,Xudong Yang,Xin Jia.Experimental and numerical investigation on nitrogen transformation in pressurized oxy-fuel combustion of pulverized coal[J].Journal of Cleaner Production,2021
  • [4] Ying Wu,Xiaoping Chen,Jiliang Ma,Ye Wu,Daoyin Liu,Weiyi Xie.System integration optimization for coal-fired power plant with CO 2 capture by Na 2 CO 3 dry sorbents[J].Energy,2020
  • [5] Ying Wu,Xiaoping Chen,Jiliang Ma,Ye Wu,Daoyin Liu,Jianguo Mi,Weiyi Xie.System integration for coal-fired power plant with post combustion CO 2 capture: Comparative study for different solid dry sorbents[J].Fuel,2020
  • [6] Du Wang,Changwei Ji,Zhe Wang,Shuofeng Wang,Tianyue Zhang,Jinxin Yang.Measurement of oxy-ammonia laminar burning velocity at normal and elevated temperatures[J].Fuel,2020
  • [7] Pang Lei,Shao Yingjuan,Zhong Wenqi,Liu Hao.Oxy-coal combustion in a 30?kWth pressurized fluidized bed: Effect of combustion pressure on combustion performance, pollutant emissions and desulfurization[J].Proceedings of the Combustion Institute,2020(prep)
  • [8] Experimental Study of NOx Formation in a High-Steam Atmosphere During a Pressurized Oxygen-Fuel Combustion Process
    Zan, Haifeng
    Chen, Xiaoping
    Ma, Jiliang
    Liu, Daoyin
    Wu, Ying
    [J]. ACS OMEGA, 2020, 5 (26): : 16037 - 16044
  • [9] Yanling Yang,Mingwu Tan,Aidan Garcia,Zhaoxia Zhang,Jingdong Lin,Shaolong Wan,Jean Sabin McEwen,Shuai Wang,Yong Wang.Controlling the Oxidation State of Fe-based Catalysts Through Nitrogen Doping Toward the Hydrodeoxygenation of m-Cresol[J].ACS Catalysis,2020
  • [10] Ji Liu,Xiaolei Zhang,Bin Hu,Qiang Lu,Ding-jia Liu,Chang-qing Dong,Yong-ping Yang.Formation mechanism of HCN and NH 3 during indole pyrolysis: A theoretical DFT study[J].Journal of the Energy Institute,2020