Experimental study and development on a pre-burning low-NOx burner for pulverized coal industry boiler
XU Xinwei;TAN Houzhang;WANG Xuebin;YANG Fuxin;LIU Xing;ZHENG Haiguo;
Abstract:
The increasingly strict emission standards on NO_x put forward higher requirements for the performances of the coal-fired industrial boilers. It is hard for the existing burners in industrial boilers to meet the emission restrictions by operation optimization. In this study,a new type of coal-fired low-NO_x swirling burner for industry boilers was developed. Through the experiments in a 25 t/h industry boiler,the effects of primary air ratio,secondary air distribution,swirling angle,recirculated flue gas( FGR) and over fire air( OFA) ratio on NO_x emission and combustion efficiency were studied. The results show that the NO_x emission increases when the primary air ratio increases from 7.8% to 8.5% and the inner/outer secondary air ratio increases from 0.67 to 1.32. As the angel of swirl vane increases from 30° to 60°,the NO_x emission decreases first and then increases. With the increase of FGR ratio from zero to 13.3%,the NO_x emission first decreases and then tends to be stable. The effect from OFA ratio on NO_x emission is slight,and with the increase of OFA ratio,the NO_x emission first decreases,and then increases. During the test process,the coal stream flame is stable and the unburned carbon content in fly ash( UBC) is always lower than 25%. The lowest NO_x emission is obtained as 171-178 mg/m~3( 9% O_2),with a UBC value of 14.9% and a boiler efficiency of 91.7%.
Key Words: pulverized coal industry boiler;low-NO_x burner;boiler efficiency;air distribution
Foundation: 国家重点研发计划资助项目(2017YFB0603902)
Authors: XU Xinwei;TAN Houzhang;WANG Xuebin;YANG Fuxin;LIU Xing;ZHENG Haiguo;
DOI: 10.13226/j.issn.1006-6772.IF20080620
References:
- [1]LEVINE Joel S,AUGUSTSSON Tommy R,ANDERSON Iris C,et al.Tropospheric sources of NOx:Lightning and biology[J].Atmospheric Environment,1984,18(9):1797-1804.
- [2]国家能源局.全国电力工业统计数据[EB/OL].(2014-01-14)[2020-08-06].http://www.nea.gov.cn/2014-01/14/c_133043689.htm.
- [3]王逸飞.工业锅炉节能技术研究综述[J].应用能源技术,2016(7):25-28.WANG Yifei.Review of technology in industrial boiler[J].Applied Energy Technology,2016(7):25-28.
- [4]王春晶.中小燃煤工业锅炉节能减排途径及情景分析[J].洁净煤技术,2016,22(1):109-113.WANG Chunjing.Energy-saving way analysis of smallmedium coal-fired industrial boilers[J].Clean Coal Technology,2016,22(1):109-113
- [5]刘孝天,于景泽,刘恒宇,等.超超临界燃煤锅炉技术研究[J].锅炉制造,2015(5):11-13.LIU Xiaotian,YU Jingze,LIU Hengyu,et al.Research on1 000 MW USCcoal-fired boiler[J].Boiler Manufacturing,2015(5):11-13.
- [6]王善武.我国工业锅炉节能潜力分析与建议[J].工业锅炉,2005(1):1-16.WANG Shanwu.Potentialanalysis of China IB injustry's energysaving and some suggestions[J].Industrial Boiler,2005 (1):1-16.
- [7]赵钦新,陈晓露,邵怀爽,等.工业锅炉技术创新及发展[J].工业锅炉,2016(6):1-23.ZHAO Qinxin,CHEN Xiaolu,SHAO Huaishuang,et al.Technicalinnovation&development in industrial boiler[J].Industrial Boiler,2016(6):1-23.
- [8]王翰锋.中国燃煤工业锅炉政策解析与展望[J].洁净煤技术,2020,26(2):1-6.WANG Hanfeng.Policy analysis and prospects of China's coalfired industrial boiler[J].Clean Coal Technology,2020,26(2):1-6.
- [9]尚庆雨.我国煤粉工业锅炉技术现状及发展趋势[J].煤炭科学技术,2016,44(1):201-206.SHANG Qingyu.Current status and development trend of pulverized coal industrial boilers in China[J].Coal Science and Technology,2016,44(1):201-206.
- [10]林宗虎.节能减排与工业锅炉技术创新[J].工业锅炉,2020(1):2-4.LIN Zonghu.Energy-saving and technical innovation on industrial boilers[J].Industrial Boiler,2020(1):2-4.
- [11]杨定华,吕俊复,张海,等.富集型燃烧器的原理与应用[J].2008,28(1):45-49.YANG Dinghua,LYU Junfu,ZHANG Hai,et al.Principle and application of the concentrated pulverized coal burner[J].20018,28(1):45-49.
- [12]ZHAO Linging,ZHOU Qiangtai,ZHAO Changsui.Flame characteristics in a novel petal swirl burner[J].Combustion&Flame,2008,155(1/2):277-288.
- [13]NIU Yanqing,SHANG Tong,ZENG Jun,et al.Effect of pulverized coal preheating on NOxreduction during combustion[J].Energy&Fuels,2017,31(4):4436-4444.
- [14]朱书骏,吕清刚,朱建国,等.基于循环流化床预热的半焦燃烧试验研究[J].工程热物理学报,2018,39(4):887-892.ZHU Shujun,LYU Qinggang,ZHU Jianguo,et al.Experimental study on pulverized char combustion preheated by a circulating fluidized bed[J].Journal of Engineering Thermophysics,2018,39(4):887-892.
- [15]OUYANG Ziqu,LU Qinggang,ZHU Jianguo.Anexperimental study on NOxemissions in combustion of pulverized coal preheated in a circulating fluidized bed[J].Energy&Fuels,2013,27(12):7724-7729.
- [16]WANG Jun,ZHU Jianguo,LU Qinggang.Experimentalstudy on combustion characteristics and NOxemissions of pulverized anthracite preheated by circulating fluidized bed[J].Journal of Thermal Science,2011,20(4):355-361.
- [17]OUYANG Ziqu,ZHU Jianguo,LYU Qinggang,et al.Experimental study on preheating and combustion characteristics of pulverized anthracite coal[J].Energy&Fuels,2013,113:122-127.
- [18]龚彦豪,许鑫玮,王登辉,等.新型低氮旋流燃烧器NOx排放特性[J].洁净煤技术,2019,25(6):118-125.GONG Yanhao,XU Xinwei,WANG Denghui,et al.NOxemissions characteristics of a novel low-NOxswirl burner[J].Clean Coal Technology,2019,25(6):118-125.
- [19]尚天坤.贫煤低NOx旋流燃烧器的试验及模拟研究[D].北京:清华大学,2016.SHANG Tiankun.Experimental study and numerical simulation on a low-NOxsemi-anthracite coal swirl burner[D].Beijing:Tsinghua University,2016.
- [20]WANG Xuebin,TAN Houzhang,YAN Weiping,et al.Determining the optimum coal concentration in a general tangential-fired furnace with rich-lean burners:From a bench-scale to a pilot-scale study[J].Applied Thermal Engineering,2014,73 (1):371-379.
- XU Xinwei
- TAN Houzhang
- WANG Xuebin
- YANG Fuxin
- LIU Xing
- ZHENG Haiguo
- School of Energy and Power Engineering
- Xi'an Jiao Tong University
- Xi'an Green Power Technology Co.
- Ltd.
- XU Xinwei
- TAN Houzhang
- WANG Xuebin
- YANG Fuxin
- LIU Xing
- ZHENG Haiguo
- School of Energy and Power Engineering
- Xi'an Jiao Tong University
- Xi'an Green Power Technology Co.
- Ltd.