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李争起
姓名 李争起 性别 李争起
学校 哈尔滨工业大学 部门 能源科学与工程学院
学位 李争起 学历 李争起
职称 教授 联系方式 86413231转806
邮箱 green@hit.edu.cn    
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李争起

基本信息 科学研究 教育教学 成员风采 论文专著 我的新闻 实验室动态 ... 我的新闻 实验室动态 新建主栏目 基本信息 名称 李争起,哈尔滨工业大学能源科学与工程学院,二级教授,长聘教授,博士生导师,工学博士。曾获教育部新世纪优秀人才计划资助,以“头雁”负责的《清洁能源与热科学技术创新团队》获黑龙江省首批头雁创新团队支持。被哈尔滨锅炉厂有限责任公司聘为首席技术专家。2023年度院士候选人。主要从事碳基燃料低碳降污机理及技术的科研与教学工作。《高性能中心给粉旋流煤粉燃烧技术》获2015年度国家技术发明二等奖(排序第一),《风控浓淡煤粉燃烧技术》获2000年度国家技术发明二等奖(排序第四),获中共中央、国务院、中央军委颁发的中华人民共和国成立70周年纪念章。指导的博士生2人次获全国百博提名奖。出版英文著作2部、中文专著1部。录用及发表国际刊物论文170篇(SCI、EI双检160篇),美国、英国、德国专利授权3项,中国发明专利授权120项,实用新型专利2项。2014-2021年连续八年入选爱思唯尔中国高被引学者榜单。主要社会兼职:《Frontiers in Energy》(中国工程院院刊,SCI源刊)、《Process》(SCI源刊)、《Advances in Energy》、《Science and Technolog》及《热能动力工程》编委、中国煤炭学会煤粉锅炉委员会委员、哈尔滨市环保委员会生态环境专家。 教育经历 名称 1986年从河北辛集中学来到哈尔滨工业大学学习,完成了学士、硕士、博士阶段的学习. 工作经历 名称 时间 工作经历 1993年 留校任教 1998年 破格晋升为副教授 2002年 破格晋升为教授 2003年 增选为博士生指导教师 2016年 晋升为二级教授 2016年 长聘二级岗位 研究团队 名称 团队负责人: 李争起教授 团队成员: 陈智超研究员 陈智超研究员个人主页 吴江全研究员 团队精神: 埋头苦干,超越自我,勇往直前。 获奖情况 名称 1、高性能中心给粉旋流煤粉燃烧技术,获2015年度国家技术发明二等奖(本人排序第1),2015年国家技术 发明二等奖技术简介.doc; 2、风控浓淡煤粉燃烧技术,获2000年度国家发明二等奖(本人排序第4); 3、获中共中央、国务院、中央军委联合颁发的“庆祝中华人民共和国成立70周年”国家纪念章; 4、W火焰锅炉多次引射分级燃烧技术,获2020年度黑龙江省技术发明一等奖(本人排序第1) 5、多次分级中心给粉旋流煤粉高效低氮氧化物燃烧技术,获2014年度黑龙江省技术发明一等奖(本人排序第1); 6、多次引射分级燃烧的方法,获2022年度(首届)黑龙江省专利奖优秀奖(本人排序第1); 7、中心给粉旋流煤粉燃烧技术在然用贫煤1025t/h锅炉上的应用及开发,2005年获河北省科技进步三等奖(本人排序第3); 8、立体分级低氮燃烧技术,2011年获黑龙江省科技进步一等奖(本人排序第6); 9、600MW超临界W火焰锅炉研制及产业化,2017年获黑龙江省科技进步二等奖(本人排序5); 10、本人的博士论文被评为校首届优秀博士学位论文,获第八届(2002年度)霍英东教育基金会高校青年教师(研究类)奖,2004年入围教育部新世纪优秀人才支持计划,2007年获第八届黑龙江省青年科技奖; 11、2019年以李争起教授为“头雁”的清洁能源与热科学技术创新团队入选黑龙江省首批“头雁”团队; 12、培养的博士研究生2人次获全国百篇优秀博士学位论文提名奖,2人次获吴仲华优秀学生奖,5人次获哈尔滨工业大学优秀博士学位论文。 主要任职 名称 1.被哈尔滨锅炉厂有限责任公司聘为首席技术专家。 2. Energy and Power Engineering、Advances in Energy、Frontiers in Energy(中国工程院院刊,SCI源刊)、 Process(SCI源刊)、Energy Science and Technology以及《热能动力工程》期刊的编委。中国煤炭学会煤粉锅炉委员会委员、哈尔滨市环保委员会生态环境专家。 3. Energy& Fuels、Combustion Science andTechnology、Journal of EnvironmentalMangement、Asia-Pacific Journal ofChemical Engineering、 International Journal ofGreenhouse Gas Control、Environmental Science &Technology、Applied Energy等SCI期刊的特邀审稿人。 4. 中国电机工程学报、热能动力工程、燃烧科学与技术等刊物审稿专家;中国动力工程学会锅炉专业委员会委员;教育部博士点基金网评专家,国家863课题能源领域网评专家。 研究领域 名称 1. 灵活性深度调峰旋流煤粉燃烧机理及技术的研究 燃煤电站是我国电力能源的主要来源。近年来随着风电/光伏等新能源产业的快速发展,其装机所占比重越来越大,社会用电量增速持续放缓,电网峰谷负荷差值日益增大,加之新能源装机参与电网调峰的局限性,决定了并网的火电机组需要平抑规模化光伏、风电大幅度波动。为实现低碳,火电机组深度调峰将成为新常态。本团队开发的中心给粉旋流煤粉燃烧技术已在35台引进国外技术的300、600MW机组上获得了应用,并获得国家技术发明二等奖。在此基础上,开展电站锅炉灵活性深度调峰旋流煤粉燃烧机理及技术的研究。 旋流煤粉燃烧器 旋流煤粉燃烧技术原理 2.灵活性深度调峰W型火焰燃烧机理及技术的研究 为实现低碳,W火焰燃烧方式火电机组深度调峰成为新常态。本团队开发的W火焰锅炉多次引射分级燃烧技术已在40台引进国外技术的300、600MW机组上获得了应用,并获得了黑龙江省技术发明一等奖。在此基础上,开展W型火焰锅炉炉内单相、气固两相流动、燃烧及NOx生成特性研究,探索适于W型火焰的灵活性深度调峰机理及技术的研究。已在多台600MW机组上锅炉上实现了30%负荷不投油稳定运行,实现了工业应用的突破。 图片 应用新燃烧技术的600MW超临界W火焰锅炉燃烧器布置 图片 应用新燃烧技术的600MW超临界W火焰锅炉拱上下射气流烟花示踪轨迹 3. 气固两相流动 旋流燃烧器出口区域,不同粒径的煤粉及空气的轴向、切向、径向速度分布、中心回流区尺寸及位置、颗粒浓度分布、相间速度滑移等流动特性直接决定了燃烧器的性能,同时,这样复杂两相流中气体及颗粒湍流特性有待于探索。W火焰锅炉气固流动特性也是研究煤粉燃烧的基本方面。主要采用PDA测量及数值模拟展开研究。 旋流燃烧器PDA试验台 4. 残炭常压气流床熔渣气化机理及工艺 我国是一个富煤、贫油、少气的国家,能源结构以煤炭为主,煤化工产业是我国主要产业支柱之一。煤气化不仅是合成化学原料、合成液体燃料以及IGCC发电等过程工业的基础,也是缓解我国油气对外依存度过高局面的有效途径之一,具有国家战略意义。 我国煤化工行业常用的流化床气化炉气化技术、恩德气化炉气化技术、德士古等加压气化技术每年产生大量的气化残炭,含碳量高达25%-50%。气化残炭含碳量高,浪费了煤炭资源,增加了碳排放。 采用常压气流床技术将气化残炭气化,大幅度降低气化残炭含碳量,实现气化残炭的大规模工业化利用,解决气化残炭引起的碳排放高的问题,节约煤炭资源。 主要开展的研究工作:(1)对不同气化技术产生的气化残炭进行气化反应机理分析,研究气化残炭在常压下的反应动力学。(2)开发残炭常压气流床熔渣气化炉的热力计算方法。(3)开展大量的单相、气固两相实验室研究,进行了燃烧、气化数值模拟研究,开发残炭常压气流床气化工艺及核心设备的研发。(4)对残炭常压气流床熔渣气化工艺进行工业示范。 现已完成1台造气量为30000Nm3/h的常压气流床气化工艺工业示范,与哈尔滨锅炉厂有限公司联合开展10000Nm3/h的残炭常压气流床熔渣气化工业示范。 采用新技术的27000Nm3/h常压气流床气化炉 讲授课程 名称 为本科生开设了《热力系统及设备》、《煤燃烧理论的创新》、《燃烧学》及《燃烧设备》。 为研究生开设了《燃烧理论》。 优秀博士论文成果简介 名称 培养的博士研究生2人次获全国百篇优秀博士学位论文提名奖,2人次获吴仲华优秀学生奖,5人次获哈尔滨工业大学优秀博士学位论文。 优秀博士论文成果简介.doc 部分博士研究生培养 名称 序号 姓名 日期 课题方向 毕业去向 期间所获荣誉 SCI数量 1 陈智超 2003.09-2007.06 中心给粉旋流燃烧器气固流动及应用的研究 哈尔滨工业大学能源学院 2008年度哈尔滨工业大学优博奖 58 2 任枫 2006.03-2010.08 燃用无烟煤W型火焰锅炉高效低NOx燃烧技术 中国航天科技集团公司 2013年度全国百篇优博提名奖 16 3 靖剑平 2007.03-2010.06 燃用烟煤中心给粉旋流燃烧器流动及燃烧特性研究_靖剑平 环境保护部与辐射安全中心 2012年度国家百博提名奖 12 4 刘光奎 2007.03-2013.10 660MWe机组FW型W火焰锅炉低氮氧化物燃烧技术研究 中国特种设备检测研究院 哈工大2012年度“三好学生”;2012年度“上海锅炉厂有限公司”奖学金;2010年度:“上海锅炉厂有限公司”奖学金 6 5 曾令艳 2007.09-2012.01 采用斗巴旋流燃烧器锅炉煤粉燃烧和NOx排放特性研究 哈尔滨工业大学能源学院 “上海锅炉厂有限公司”奖学金;“三好学生” 13 6 范夙博 2007.09-2011.12 采用旋流燃烧器W火焰锅炉流动、燃烧及NOx生成研究 哈工大市政学院 5 7 况敏 2008.03-2012.12 英巴W火焰锅炉及多次引射分级燃烧技术研究 宁波大学 2014年度哈尔滨工业大学优博奖;2012年度黑龙江省优秀毕业生 31 8 刘春龙 2009.09-2013.10 微油量中心点燃煤粉中试实验研究_刘春龙 中国科学院长春光学精密机械与物理研究所 国家一等奖学金 11 9 遆曙光 2010.09-2015.05 深度分级条件下燃用烟煤中心给粉燃烧器流动及燃烧特性 郑州轻工业学院 4 10 李松 2012.02-2016.06 燃用低挥发分煤中心给粉旋流燃烧技术研究 航天三院 3 11 王浩鹏 2014.09-2018.10 常压干煤粉气化剂强旋转气流床气化技术研究 郑州轻工业学院 2 部分硕士研究生培养 名称 序号 姓名 日期 课题方向 毕业去向 1 王富强 2005.08-2007.07 一次风扩口对中心给粉燃烧器气固流动影响的试验研究 哈尔滨工业大学(威海) 2 张福成 2008.07-2010.07 圆周浓淡燃烧器气固两相流动特性试验及数值模拟研究 中国广核集团 3 徐善田 2009.06-2011.06 英巴W火焰锅炉高效低氮氧化物燃烧技术数值模拟研究 航天科技集团一院十五所 4 申珊平 2009.06-2011.06 运行参对350MWW火焰锅炉燃烧影的数值模拟 中航商用航空发动机有限责任公司 5 朱兴营 2010.07-2012.07 拱上OFA对W火焰炉燃烧及NOx生成特性影响数值模拟研究 航天科技集团第十一研究院 6 周航 2010.07-2012.07 350MW超临界W火焰锅炉气固两相流动试验研究 上海电气集团股份有限公司 7 陈夏超 2011.08-2013.07 燃用低挥发分煤多次分级中心给粉旋流燃烧技术研究 中国航天科技集团公司第六研究院第八〇一研究所 8 王阳 2011.08-2013.07 风温对0.5MW中心给粉燃烧器燃烧影响的中试试验研究 中国航天科技集团公司第五研究院第五〇八研究所 9 张锡乾 2013.08-2015.07 恩德粉煤气化炉气固喷射器的流动特性研究 中国华电科工集团有限公司 10 蒋炳坤 2014.08-2016.07 恩德气化炉煤焦气化特性热重实验研究 大唐东北电力试验研究所有限公司 11 何额尔敦木图 2015.09-2017.07 煤气化 内蒙古政府 12 车苗苗 2015.09-2017.07 W火焰锅炉的低氮改造 哈尔滨电气国际工程有限责任公司 13 刘一波 2015.09-2017.07 W火焰锅炉低NOx燃烧技术 华东电力设计研究院 14 乔成成 2015.09-2017.07 煤化工 国企 15 张佳 2015.09-2017.07 恩德煤粉气化炉单相及气固两相流场特性研究 大唐东北电力试验研究所 部分本科生培养 名称 序号 姓名 日期 课题方向 毕业去向 1 郭江 2009.08-2013.07 220t/h煤粉炉设计及W火焰炉三次风倾角对炉内流动影响实验 本校保研 2 邵运璘 2010.08-2014.07 220t/h煤粉炉设计及旋流燃烧器阻力特性的研究 本校保研 3 宋功发 2010.08-2014.07 220t/h煤粉炉设计及数值模拟燃尽风出口流场 本校保研 4 严蓉 2012.08-2016.07 一台300MW W火焰锅炉旋流燃烧器结构优化/本科毕业设计(论文)重点支持项目 本校保研 燃烧工程研究所516大家庭 名称 李晓光 哈尔滨工业大学17级博士研究生 名称 李晓光 Email:262126649@qq.com 地址:黑龙江省哈尔滨工业大学动力楼516工作室 性别:男 身高:175cm 民族:满 政治面貌:中共党员 出生年月:1992.04.04 家庭地址:河北省承德市 教育背景 本科院校:哈尔滨工业大学 热能与动力工程专业 2011.08至2015.07 2011.08-2012.08 1101302班 班长 2012.09-2013.10 学院11级学生联合党支部 支部书记 2013.03-2014.03 校学生会 办公室副主任 2013.09-2014.09 学院学生党总支 宣传委员 2013.10-2014.10 学校纪检监察办公室 党风廉政建设特邀监察员 研究生院校:哈尔滨工业大学 能源科学与工程学院 动力工程专业 2013.9至今 2015.09-2016.09 能源学院研究生分会 副主席 个人能力与经历 英语 通过CET 6,能进行口语交流,具有一定的英语阅读和写作能力 计算机 二级C语言,三级网络技术 熟练使用Fluent、Chemkin模拟软件 熟练使用AutoCAD、Pro ENGINEER、CATIA等工程绘图软件 熟练使用Visual C%2B%2B、Matlab、MathApp等编程数据处理软件 熟练使用Microsoft Office办公软件(Excel、Power point、Word)、 熟练使用Flash动画设计软件;AE等视频制作软件 所获荣誉 哈尔滨工业大学优秀毕业生 哈尔滨工业大学优秀团干部、三好学生 哈尔滨工业大学暑期社会实践团队优秀个人 哈尔滨工业大学年度社会活动积极分子 已发表论文 [1] Effects of the gas/particle flow and combustion characteristics on water-wall temperature and energy conversion in a supercritical down-fired boiler at different secondary-air distributions. Energy. [2] Effects of the air-staging degree on performances of a supercritical down-fired boiler at low loads: Air/particle flow, combustion, water wall temperature, energy conversion and NOx emissions. Fuel. [3] Effects of the fuel-lean coal/air flow damper opening on combustion, energy conversion and emissions in a supercritical down-fired boiler. Fuel. [4] Numerical simulation study on the influences of the secondary-tertiary air proportion on the airflow mixing effects and pulverized coal combustion characteristics in a 300-MW down-fired boiler. Process Safety and Environmental Protection. [5] Numerical simulation investigations into the influence of the mass ratio of pulverized-coal in fuel-rich flow to that in fuel-lean flow on the combustion and NOx generation characteristics of a 600-MW down-fired boiler. Environmental Science and Pollution Research. [6] Industrial-scale investigations on effects of tertiary-air declination angle on combustion and steam temperature characteristics in a 350-MW supercritical down-fired boiler. Frontiers in Energy. [7] Effects of OFA ratio on coal combustion and NOx generation of a 600-MW downfired boiler after changing air distribution around fuel-rich flow. Journal of Energy Engineering. 兴趣及性格 爱好吉他、健身、篮球 性格乐观开朗,爱好交际,有一定的组织能力、表达能力和沟通能力,有较强的团队协作 精神,勤奋努力,乐于助人 杜贺 哈尔滨工业大学17级硕博连读研究生 名称 杜贺 Email:15262006326@163.com 地址:黑龙江省哈尔滨工业大学动力楼516工作室 性别:男 身高:178cm 政治面貌:中共党员 出生年月:1994.06 家庭住址:山东省菏泽市定陶区 专业:动力工程及工程热物理 教育背景: 本科院校:中国矿业大学安全工程学院 安全工程专业(全国排名第一) 担任职务:新闻宣传中心副部长 综合排名:7/141 研究生院校:哈尔滨工业大学 能源科学与工程学院 动力工程及工程热物理专业 2017.09至今。 个人能力: 英语通过CET 6考试,有半年的国外访学经历,能够熟练的用口语进行学术交流,英文阅读和写作能力扎实; 熟练操作Word、Excel、Powerpoint等办公软件,具有全国计算二级证书; 熟练应用AutoCAD、RFPA、SolidWorks、Fluent、ANSYS、Rhinoceros等软件。 本科期间科研经历: 2014.09 参与大学生创新项目“岩浆侵入对煤的吸附解吸特性影响研究”(已结题) 2015.04 申请大学生创新项目“岩浆接触变质带煤的吸附解吸特性与瓦斯突出效应研究”,并担任负责人(已结题) 2016.03 申请大学生创新项目“瓦斯抽采钻孔可靠性的数值模拟研究”,并担任第一负责人(已结题) 组织实施中国矿业大学噪声污染监测实验,并以第一作者发表国内论文《中国矿业大学南湖校区噪声污染等级监测》 2016.04 中国矿业大学公派赴澳大利亚卧龙岗大学进行交流学习 本科期间所获荣誉 中国矿业大学“优秀学生”荣誉称号 中国矿业大学安全工程学院“优秀共青团员”称号 全国大学生节能减排设计大赛校内选拔赛一等奖 寒假军事实习先进个人(中国矿业大学人民武装部) 第一届维维杯手机电影节短片大赛微电影类二等奖 多项校内竞赛二、三等奖 在中国矿业大学校网发表诗稿共12篇 研究生期间所获得的荣誉 哈尔滨工业大学能源科学与工程学院研究生摄影展一等奖 哈尔滨工业大学能源学院研究生“我和我的祖国”主题征文大赛一等奖 已发表论文 [1] Industrial measurement of combustion and NOx formation characteristics on a low-grade coal-fired 600MWe FW down-fired boiler retrofitted with novel low-load stable combustion technology. Fuel. [2] Numerical research on the influence of declination angle on carrying capacity of tertiary air, ignition, and combustion characteristics of pulverized coal of 300 MW down-fired utility boiler with multi-injection and multi-staging combustion technology. Journal of Energy Engineering. [3] Numerical investigation on the influence of nozzle–organization–mode of split burner on flow field distribution and combustion characteristics of a 300-MWe subcritical down-fired boiler. Asia-Pacific Journal of Chemical Engineering. 兴趣爱好及性格 性格乐观开朗,工作勤恳认真;爱好摄影、写作、健身、京剧。 路跃 哈尔滨工业大学20级博士研究生 名称 路跃 Email:422860423@qq.com 地址:黑龙江省哈尔滨工业大学动力楼517工作室 性别:男 身高:182cm 政治面貌:群众 出生年月:1990.02 家庭住址:吉林省吉林市龙潭区 专业:动力工程及工程热物理 教育背景: 本硕院校:东北电力大学 能源科学与工程学院 热能与动力工程 工作经历:浙江浙能滨海电厂 运行 博士院校:哈尔滨工业大学 能源科学与工程学院 动力工程及工程热物理 个人能力: 英语通过CET 6考试; 熟练操作Word、Excel、Powerpoint等办公软件,具有全国计算二级证书; 熟练应用AutoCAD、SolidWorks、Fluent、Aspen、Matlab等软件。 已发表论文 The application of thermal-calculation methods in the design and syngas prediction of entrained-flow coal gasifiers. Energy Conversion and Management. 兴趣爱好及性格 性格乐观开朗,工作勤恳认真;爱好游泳、写作、健身。 黄椿朝 哈尔滨工业大学21级博士研究生 名称 黄椿朝 Email:ustbhuangchunchao@163.com 地址:黑龙江省哈尔滨工业大学动力楼517工作室 性别:男 身高:175cm 政治面貌:团员 出生年月:1994.02 家庭地址:河北省衡水市 教育背景: 本科院校:江苏大学材料科学与工程学院 冶金工程专业 2014.9至2018.6 硕士院校:北京科技大学冶金与生态工程学院 冶金工程专业 2018.9至2020.12 博士院校:哈尔滨工业大学能源科学与工程学院 动力工程及工程热物理专业 2021.03至今。 个人能力与经历 英语通过CET 6考试; 全国计算机二级证书; 熟练使用Origin、PeakFit、GetData、Image J、AutoCAD、Fluent、SolidWorks等软件。 所获荣誉 江苏大学优秀毕业生、三好学生 北京科技大学优秀毕业生、三好学生、国家奖学金 兴趣爱好及性格 篮球、乒乓球、羽毛球 发表的国际刊物论文 名称 English Book 1. Zhengqi Li. Radial-Bias-Combustion andCentral-Fuel Rich Swirl Pulverized Coal Burners for Wall-Fired Boilers. NovaScience Publishers, Inc., New York, USA, 2009 2. Zhengqi Li. Corn Straw and Biomass Blends:Combustion Characteristics and NO Formation. Nova Science Publishers, Inc., NewYork, USA, 2009 中文专著 1. 旋流及W火焰煤粉燃烧技术. 中国科学出版社,2020 Papers Published in International Journals Part Ⅰ: biomass combustion 1. Wei Zhao, Zhengqi Li, Dawei Wang, Qunyi Zhu,Rui Sun, Baihong Meng and Guangbo Zhao. Combustion characteristics of differentparts of corn straw and NO formation in a fixed bed. Bioresource Technology,2008, 99(8): 2956-2963 2. Zhengqi Li, Wei Zhao, Baihong Meng, ChunlongLiu, Qunyi Zhu, Guangbo Zhao. Kinetic study of corn straw pyrolysis: comparisonof two different three-pseudocomponent models. Bioresource Technology, 2008,99(16): 7616-7622 3. Zhengqi Li, Wei Zhao, Guangbo Zhao, FangshiZhang, Qunyi Zhu. Effect of corn stalk length on combustion characteristics ina fixed bed. Energy & Fuels, 2008, 22: 2009-2014 4. Wei Zhao, Zhengqi Li, Guangbo Zhao, FangshiZhang, Qunyi Zhu. Effect of air preheating and fuel moisture on combustioncharacteristics of corn straw in a fixed bed. Energy Conversion and Management,2008, 49: 3560-3565 5. Zhengqi Li, Chunlong Liu, Zhichao Chen, JuanQian, Wei Zhao, Qunyi Zhu. Analysis of coals and biomass pyrolysis using thedistributed activation energy model. Bioresource Technology, 2009, 100: 948-952 6. Zhengqi Li, Wei Zhao, Ruiyang Li, ZhenwangWang, Yuan Li, Guangbo Zhao. Combustion characteristics and NO formation forbiomass blends in a 35-ton-per-hour travelling grate utility boiler.Bioresource Technology, 2009, 100(7). 2278-2283 7. Zhengqi Li, Zhichao Chen, Chunlong Liu, ZhiyongHu,Wei Zhao, Guangbo Zhao. Study on pyrolysis characteristics of corn straw.International Journal of Chemical Reactor Engineering, 2011, Vol. 19, ArticleA46: http://www.bepress.com/ijcre/vol9/A46 Part Ⅱ: tangential fired boiler 8. Zhengqi Li, Longbin Yang, Penghua Qiu, Rui Sun,Lizhe Chen and Shaozeng Sun. Experimental study of the combustion efficiencyand formation of NOx in an industrial pulverized coal combustion. Int. J.Energy Res. 2004, 28(5): 511 – 520 9. R Sun, Y Wu, J Swithenbank and Zhengqi Li.Horizontal split combustion burner in a 200-MW tangential fired boiler. Journalof the Energy Institute, 2004, 77:97-107 Part Ⅲ: swirl burner 10. Zhengqi Li, Rui Sun, Lizhe Chen, Zhixin Wan,Shaohua Wu, Yukun Qin. Effect of primary air flow types on particledistributions in the near swirl burner region. Fuel, 2002, 81(6): 829-835 11. Zhengqi Li, Zhixin Wan, Shaozeng Sun, LizheChen, Shaohua Wu, Yukun Qin. Influence of division cone angles between thefuel-rich and the fuel-lean ducts on gas-particle flow and combustion nearswirl burners. Energy, 2002, 27: 1119-1130 12. Zhengqi Li, Rui Sun, Zhixin Wan, Shaozeng Sun,Shaohua Wu, Lizhe Chen. Gas-particle flow and combustionin the near-burner zoneof the swirl-stabilized pulverized coal burner. Combustion Science andTechnology, 2003, 175(11): 1979 – 2014 13. Likun Huang, Zhengqi Li, Rui Sun and Jue Zhou.Numerical study on the effect of the Over-Fire-Air to the air flow and coalcombustion in a 670 t/h wall-fired boiler. Fuel Processing Technology, 2006,87(4): 363-371 14. Z. Q. Li, Z. C. Chen, R. Sun and S. H. Wu. Newlow NOx, low grade coal fired swirl stabilised technology. Journal of theEnergy Institute, 2007, 80(3): 123-130 15. Zhichao Chen, Zhengqi Li, Fuqiang Wang,Jianping Jing, Lizhe Chen and Shaohua Wu. Gas/particle flow characteristics ofa centrally fuel rich swirl coal combustion burner. Fuel, 2008, 87: 2102-2110 16. Zhengqi Li, Jianping Jing, Zhichao Chen, FengRen, Bin Xu, Hongda Wei, and Zhihong Ge. Combustion characteristics and NOxemissions of two kinds of swirl burners in a 300-MWe wall-fired pulverized-coalutility boiler. Combustion Science and Technology, 2008, 180: 1370-1394 17. Zhichao Chen, Zhengqi Li, Jianping Jing,Hongda Wei, Lizhe Chen, Shaohua Wu, Yang Yao. Experiment Investigations on thePerformance of Centrally Fuel Rich Swirl Coal Combustion Burner: Influence ofPrimary Air Ratio. International Journal of Chemical Reactor Engineering, 2008,Vol. 6, Article A39: http://www.bepress.com/ijcre/vol6/A39 18. Zhichao Chen, Zhengqi Li, Jianping Jing,Fuqiang Wang, Lizhe Chen and Shaohua Wu. The influence of fuel bias in theprimary air duct on the gas/particle flow characteristics near the swirl burnerregion. Fuel Processing Technology, 2008, 89: 958-965 19. Zhichao Chena, Zhengqi Li, Jianping Jing,Lizhe Chen , Shaohua Wu, Yang Yao. Gas/particle flow characteristics of twoswirl burners. Energy Conversion and Management, 2009, 50: 1180-1191 20. Zhengqi Li, Jianping Jing, Zhihong Ge,Guangkui Liu, Zhichao Chen, Feng Ren. Numerical simulation of low NOxcombustion technology in a 100 MWe bituminous coal-fired wall boiler. NumericalHeat Transfer, Part A: Applications, 2009, 55(6): 574-593 21. Zhichao Chen, Zhengqi Li, Jianping Jing, LizheChen , Shaohua Wu, Yang Yao. Study on flow fields of centrally fuel rich swirlburner and its applications. Korean Journal of Chemical Engineering, 2009,26(5): 1186-1193 22. Lingyan Zeng, Zhengqi Li, Hong Cui, FuchengZhang, Zhichao Chen and Guangbo Zhao. Effect of the fuel bias distribution inthe primary air nozzle on the slagging near a swirl coal burner throat. Energy& Fuels, 2009, 23(10): 4893-4899 23. Jianping Jing, Zhengqi Li, Guangkui Liu,Zhichao Chen, Chunlong Liu. Measurement of Gas Species, Temperatures, CoalBurnout, and Wall Heat Fluxes in a 200 MWe Lignite-fired Boiler with DifferentOver-fire Air Damper Openings. Energy & Fuels, 2009, 23: 3573-3585 24. Chunlong Liu, Zhengqi Li, Yang Zhao, ZhichaoChen. Influence of Coal-feed Rates on Bituminous Coal Ignition in a Full-scaleTiny-oil Ignition Burner. Fuel, 2010, 89: 1690-1694 25. Zhengqi Li, Jianping Jing, Guangkui Liu,Zhichao Chen, Chunlong Liu. Measurement of gas species, temperatures, charburnout, and wall heat fluxes in a 200-MWe lignite-fired boiler at different loads.Applied Energy, 2010, 87: 1217-1230 26. Jianping Jing, Zhengqi Li, Guangkui Liu,Zhichao Chen, and Feng Ren. Influence of different outer secondary air vaneangles on flow and combustion characteristics and NOx emissions of a new swirlcoal burner. Energy & Fuels, 2010, 24(1): 346–354 27. Zhengqi Li, Jianping Jing, Guangkui Liu andZhichao Chen. Fractal and turbulence characteristics of aerodynamic fields ofswirl burners. Chemical Engineering Science, 2010, 65(3): 1253-1260 28. Zhengqi Li, Chunlong Liu, Yang Zhao, ZhichaoChen. Influence of the Coal-feed Rate on Lean Coal Ignition in a Full-scaleTiny-oil Ignition Burner. Energy & Fuels, 2010, 24(1): 375–378 29. Jianping Jing, Zhengqi Li, Zhichao Chen,Guangkui Liu and Chunlong Liu. Study of the influence of vane angle on flow,gas species, temperature, and char burnout in a 200 MWe lignite-fired boiler.Fuel, 2010, 89: 1973–1984 30. Lingyan Zeng, Zhengqi Li, Guangbo Zhao,Shanping Shen and Fucheng Zhang. Effect of the vane angle for outer secondaryair on flow and combustion characteristics and NOx emissions of the low-NOxaxial-swirl coal burner. Numerical Heat Transfer, Part A: Applications, 2011,59: 43–57 31. Zhengqi Li, Lingyan Zeng, Guangbo Zhao,Shanping Shen, Fucheng Zhang. Particle sticking behavior near the throat of alow- NOx axial-swirl coal burner. Applied Energy, 2011, 88: 650-658 32. Lingyan Zeng, Zhengqi Li, Guangbo Zhao,Shanping Shen, Fucheng Zhang. Numerical Simulation of Combustion Characteristicsand NOx Emissions in a 300 MWe Utility Boiler with Different OuterSecondary-Air Vane Angles. Energy & Fuels, 2010, 24: 5349–5358 33. Jianping Jing, Zhengqi Li, Qunyi Zhu, ZhichaoChen, Lin Wang, Lizhe Chen. Influence of the outer secondary air vane angle onthe gas/particle flow characteristics near the double swirl flow burner region.Energy, 2011, 36: 258–267 34. Jianping Jing, Zhengqi Li, Qunyi Zhu, ZhichaoChen, and Feng Ren. Influence of primary air ratio on flow and combustioncharacteristics and NOx emissions of a new swirl coal burner. Energy, 2011,36(2): 1206–1213 35. Zhichao Chen, Zhengqi Li, Qunyi Zhu, JianpingJing. Gas/particle flow and combustion characteristics and NOx emissions of anew swirl coal burner. Energy, 2011, 36(2): 709–723 36. Zhichao Chen, Zhengqi Li, Zhenwang Wang,Chunlong Liu, Lizhe Chen, Qunyi Zhu, Yuan Li. The Influence of Distance betweenAdjacent Rings on the Gas/particle Flow Characteristics of Conical RingsConcentrator. Energy, 2011, 36(5): 2557-2564 37. Jianping Jing, Zhengqi Li, Lin Wang, ZhichaoChen, Lizhe Chen, Fucheng Zhang. Influence of the mass flow rate of secondaryair on the gas/particle flow characteristics in the near-burner region of adouble swirl flow burner. Chemical Engineering Science, 2011, 66: 2864–2871 38. Jianping Jing, Zhengqi Li, Lin Wang, LizheChen, Guohua Yang. Influence of secondary-air mass flow rates on gas/particleflow characteristics near the swirl burner region. Energy, 2011, 36(5):3599-3605 39. Zhichao Chen, Zhengqi Li, Qunyi Zhu, LianjieYang, Lizhe Chen. Concentrator Performance within a Centrally Fuel-Rich PrimaryAir Burner: Influence of Multiple Levels. Energy, 2011, 36(7): 4041-4047 40. Zhengqi Li, Lingyan Zeng, Guangbo Zhao,Shanping Shen, and Fucheng Zhang. Numerical simulations of combustioncharacteristics and NOx emissions for two configurations of swirl coal burnersin a 300 MWe wall-fired boiler. Numerical Heat Transfer, Part A: Applications,2011, 60: 441-460 41. Lingyan Zeng, Zhengqi Li, Guangbo Zhao, JingLi, Fucheng Zhang, Shanping Shen and Lizhe Chen. The Influence of Swirl BurnerStructure on the Gas/particle Flow Characteristics. Energy, 2011, 36(10):6184-6194 42. Zhengqi Li, Lingyan Zeng, Guangbo Zhao, JingLi, Shanping Shen, Lizhe Chen and Fucheng Zhang. Cold ExperimentalInvestigations into Gas/particle flow characteristics of a Low-NOx axial swirlburner in a 600-MWe wall-fired pulverized-coal utility boiler. ExperimentalThermal and Fluid Science, 2012, 37: 104–112 43. Zhengqi Li, Yong Liu, Zhichao Chen, Qunyi Zhu,Jinzhao Jia, Jing Li, Zhenwang Wang, Yukun Qin. Effect of air temperature oncombustion characteristics and NOx emissions from a 0.5 MW pulverizedcoal-fired furnace with deep air staging. Energy & Fuels, 2012, 26:2068–2074 44. Jing Jian-Ping,Zhang Chun-Ming,Sun Wei,An Jieruo,Bi Jin-Sheng,Li Zheng-Qi. Influence of mass-flow ratio of innerto outer secondary air on gas-particle flow near a swirl burner. Particuology,2013,11:540-548 45. Zhichao Chen; Zhenwang Wang; Zhengqi Li;Yiquan Xie; Shuguang Ti; Qunyi Zhu. Experimental investigation intopulverized-coal combustion performance and NO formation usingsub-stoichiometric ratios. To be published in Energy 46. Shuguang Ti, Zhichao Chen, Zhengqi Li, YiquanXie, Yunlin Shao, Qiudong Zong, Qinghua Zhang, Hao Zhang, Lingyan Zeng, QunyiZhu. Influence of Different Swirl Vane Angles of Over Fire Air on Flow andCombustion Characteristics and NOx Emissions in a 600 MWe Utility Boiler. Energy,2014,74:775-787 47. Zhengqi Li, Song Li, Qunyi Zhu, Xiqian Zhang,Guipeng Li, Yong Liu, Zhichao Chen, Jiangquan Wu. Effects of particleconcentration variation in the primary air duct on combustion characteristicsand NOx emissions in a 0.5-MW test facility with pulverized coal swirl burners.To be published in Applied Thermal Engineering 48. Shuguang Ti, Zhichao Chen, Zhengqi Li, XiqianZhang, Hao Zhang, Gaopeng Zou, Lingyan Zeng, Qunyi Zhu. Effects of the outersecondary air cone length on the combustion characteristics and NOx emissionsof the swirl burner in a 0.5 MW pilot-scale facility during air-stagedcombustion. Applied Thermal Engineering,2015,86:318-325 49. Shuguang Ti, Zhichao Chen,* Zhengqi Li,Guipeng Li, Hao Zhang, Lingyan Zeng and Qunyi Zhu. Effect of inner secondaryair cone length of a centrally fuel-rich swirl burner on combustioncharacteristics and NOx emissions in a 0.5MW pulverized coal-fired furnace withair-staging. To be published in Asia-Pacific Journal of Chemical Engineering 50. Li Song, Zhengqi Li, Bingkun Jiang, ZhichaoChen, Xiqian Zhang. Effect of secondary-air mass flow rate on the airflow andcombustion characteristics and NOx formation of the low-volatile coal-firedswirl burner. Asia-Pacific Journal of Chemical Engineering, 2015, 10(6):858-875 51. Song Li, Zhichao Chen, Xiaoguang Li, BingkunJiang, Zhengqi Li, Rui Sun Qunyi Zhu, Xiqian Zhang. Effect of outersecondary-air vane angle on the flow and combustion characteristics and NOxformation of the swirl burner in a 300-MW low-volatile coal-fired boiler withdeep air staging. Journal of the Energy Institute, 2016, 1-18 52. Song Li, Zhichao Chen, Erdemtu He, BingkunJiang, Zhengqi Li, Qingxiang Wang. Combustion characteristics and NOx formationof a retrofitted low-volatile coal-fired 330 MW utility boiler under variousloads with deep-air-staging. To be published in Applied Thermal Engineering Part Ⅳ:down-fired pulverized-coal boiler 1.Feng Ren, Zhengqi Li, Yubin Zhang, Shaozeng Sun, Xiaohui Zhang, and Zhichao Chen. Influence of the Secondary Air-Box Damper Opening on Airflow and Combustion Characteristics of a Down-Fired 300-MWe Utility Boiler. Energy & Fuels, 2007, 21(2): 668-676.IF:3.024 2. Zhengqi Li, Feng Ren, Jie Zhang, Xiaohui Zhang, Zhichao Chen and Lizhe Chen. Influence of vent air valve opening on combustion characteristics of a down-fired pulverized-coal 300 MWe utility boiler. Fuel, 2007, 86(15): 2457-2462. IF: 4.908 3. Feng Ren, Zhengqi Li, Jianping Jing, Xiaohui Zhang, Zhichao Chen and Juwei Zhang. Influence of the adjustable vane position on the flow and combustion characteristics of a down-fired pulverized-coal 300 MWe utility boiler. Fuel Processing Technology, 2008, 89(12): 1297-1305. IF: 3.956, 4. Feng Ren, Zhengqi Li, Zhichao Chen, Jingjie Wang and Zhao Chen. Influence of the down-draft secondary air on the furnace aerodynamic characteristics of a down-fired boiler. Energy & Fuels, 2009, 23(5):2437-2443. IF: 3.024 5. Zhengqi Li, Feng Ren, Zhichao Chen, Guangkui Liu and Zhenxing Xu. Experimental investigations into gas/particle flows in a down-fired boiler: influence of down-draft secondary air. Energy & Fuels, 2009, 23(12): 5846–5854. IF: 3.024 6. Zhengqi Li, Feng Ren, Zhichao Chen, Zhao Chen and Jingjie Wang. Influence of declivitous secondary air on combustion characteristics of a down-fired 300-MWe utility boiler. Fuel, 2010, 89: 410-416. IF: 4.908 7. Subo Fan, Zhengqi Li, Xuehai Yang, Guangkui Liu and Zhichao Chen. Influence of Outer Secondary Air Vane Angle on Combustion Characteristics and NOx Emissions of a Down-Fired Pulverized-coal 300 MWe Utility Boiler. Fuel, 2010, 89: 1525-1533. IF: 4.908 8. Zhengqi Li, Feng Ren, Zhichao Chen, Jingjie Wang, Zhao Chen, Juwei Zhang. Influence of oil atomized air on flow and combustion characteristics in a 300 MWe down-fired boiler. Asia-Pacific Journal of Chemical Engineering, 2010, 5: 488-496. IF: 1.238 9. Zhengqi Li, Subo Fan, Guangkui Liu, Xuehai Yang, Zhichao Chen, Wei Su, Lin Wang. Influence of Staged-Air on Combustion Characteristics and NOx Emissions of a 300 MWe Down-Fired Boiler with Swirl Burners. Energy & Fuels, 2010, 24(1): 38–45. IF: 3.024 10. Zhengqi Li, Min Kuang, Jia Zhang, Yunfeng Han, Qunyi Zhu, Lianjie Yang and Weiguang Kong. Influence of Staged-air on Airflow, Combustion Characteristics and NOx Emissions of a Down-fired Pulverized-coal 300 MWe Utility Boiler with Direct Flow Split Burners. Environmental Science & Technology, 2010, 44(3): 1130-1136. IF: 6.653 11. Feng Ren, Zhengqi Li, Zhichao Chen, Zhenxing Xu and Guohua Yang. Experimental investigations into gas/particle flows in a down-fired boiler: influence of the vent air ratio. Energy & Fuels, 2010, 24(3): 1592–1602. IF: 3.024 12. Min Kuang, Zhengqi Li, Yunfeng Han, Lianjie Yang, Qunyi Zhu, Jia Zhang and Shanping Shen. Influence of Staged-air Declination Angle on Flow Field Deflection in a Down-fired Pulverized-coal 300 MWe Utility Boiler with Direct Flow Split Burners. Energy & Fuels, 2010, 24(3): 1603–1610. IF: 3.024 13. Zhengqi Li, Feng Ren, Zhichao Chen, Guangkui Liu, Zhenxing Xu. Improved NOx emissions and combustion characteristics for a retrofitted down-fired 300-MWe utility boiler. Environmental Science & Technology, 2010, 44(10): 3926–3931. IF: 6.653 14. Feng Ren, Zhengqi Li, Zhichao Chen, Zhenxing Xu, Qunyi Zhu and Guahua Yang. Experimental Investigations into Gas/Particle Flows in a Down-Fired Boiler: Influence of Secondary Air Momentum. Energy & Fuels, 2010, 24: 3498–3509. IF: 3.024 15. Zhengqi Li, Subo Fan, Wei Su, Zhichao Chen. Influence of Outer Secondary Air Vane Angle on Flow Field of a Down-Fired Pulverized-coal 300 MWe Utility Boiler with Swirl Burners. Energy & Fuels, 2010, 24(7): 3884–3889. IF: 3.024 16. Chunlong Liu, Zhengqi Li, Weiguang Kong, Yang Zhao, Zhichao Chen. Bituminous Coal Combustion in a Full-scale Start-up Ignition Burner: Influence of the Excess Air Ratio. Energy, 2010, 35: 4102–4106. IF: 4.968 17. Zhengqi Li, Chunlong Liu, Qunyi Zhu, Weiguang Kong, Yang Zhao, Zhichao Chen. Experimental Studies on the Effect of the Pulverized Coal Concentration on Lean-Coal Combustion in a Lateral-Ignition Tiny-oil Burner. Energy & Fuels, 2010, 24: 4161–4165. IF: 3.024 18. Feng Ren, Zhengqi Li, Zhichao Chen, Subo Fan, Guangkui Liu. Influence of the overfire air ratio on the NOx emission and combustion characteristics of a down-fired 300-MWe utility boiler. Environmental Science & Technology, 2010, 44: 6510–6516. IF: 6.653 19. Zhengqi Li, Feng Ren, Guangkui Liu, Shanping Shen and Zhichao Chen. Influence of angled secondary air on combustion characteristics of a 660 MWe down-fired utility boiler. Combustion Science and Technology, 2011, 183(3): 238–251. IF: 1.132 20. Zhengqi Li, Min Kuang, Qunyi Zhu, Pengfei Yang, Yuangang Wu, and Shantian Xu. Staged-Air Ratio Optimization within a Cold Small-Scale Model for a MBEL Down-Fired Pulverized-Coal 300 MWe Utility Boiler. Energy & Fuels, 2010, 24: 4883–4892. IF: 3.024 21. Feng Ren, Zhengqi Li, Zhichao Chen, Zhenxing Xu and Guohua Yang. Influence of the over-fire air angle on the flow field in a down-fired furnace determined by a cold-flow experiment. Fuel, 2011, 90: 997–1003. IF: 4.908 22. Feng Ren, Zhengqi Li, Guangkui Liu, Zhichao Chen, and Qunyi Zhu. Combustion and NOx Emissions Characteristics of a Down-Fired 660-MWe Utility Boiler Retro-fitted with Air-surrounding-fuel Concept. Energy, 2011, 36: 70–77. IF: 4.968 23. Zhengqi Li, Min Kuang, Qunyi Zhu, Pengfei Yang. Flow-Field Deflection within a Cold Small-Scale Model for a Down-Fired 300 MWe Utility Boiler at Asymmetric Staged-Air Distribution. Energy & Fuels, 2011, 25(1): 86–96. IF: 3.024 24. Zhengqi Li, Guangkui Liu, Qunyi Zhu, Zhichao Chen, Feng Ren. Combustion and NOx emission characteristics of a retrofitted down-fired 660 MWe utility boiler at different loads. Applied Energy, 2011, 88: 2400–2406. IF: 7.9 25. Min Kuang, Zhengqi Li, Pengfei Yang, Jinzhao Jia and Qunyi Zhu. Flow-field deflection characteristics within a cold small-scale model for a down-fired 300 MWe utility boiler at different secondary-air angles. Fuel Processing Technology, 2011, 92: 1261–1271. IF: 3.956 26. Min Kuang, Zhengqi Li, Pengfei Yang, Jinzhao Jia and Qunyi Zhu. Staged-Air Ratio Optimization for a New Down-Fired Technology within a Cold Small-Scale Model of a 350 MWe Utility Boiler. Energy & Fuels, 2011, 25: 1485–1496. IF: 3.024 27. Min Kuang, Zhengqi Li, Shantian Xu, and Qunyi Zhu. Improving Combustion Characteristics and NOx Emissions of a Down-Fired 350 MWe Utility Boiler with Multiple Injection and Multiple Staging. Environmental Science & Technology, 2011, 45: 3803–3811. IF: 6.653 28. Feng Ren, Zhengqi Li, Guangkui Liu, Zhichao Chen, and Qunyi Zhu. Numerical Simulation of Flow and Combustion Characteristics in a 300 MWe Down-Fired Boiler with Different OFA angles. Energy & Fuels, 2011, 25: 1457–1464. IF: 3.024 29. Min Kuang, Zhengqi Li, Shantian Xu, Xingying Zhu, Yan Zhang, Qunyi Zhu. Impact of overfire location on combustion improvement and NOx abatement of a down-fired 350 MWe utility boiler with multiple injection and multiple staging. Energy & Fuels, 2011, 25(10): 4322-4332. IF: 3.024 30. Zhengqi Li, Subo Fan, Qunyi Zhu, Wei Su, Zhichao Chen, Yukun Qin. Influence of Staged-air Flow on Flow Characteristics in a Scale Model of a Down-fired Utility Boiler with Swirl Burners: An Experimental Study. Fuel, 2012, 93: 160–166. IF: 4.908 31. Min Kuang, Zhengqi Li, Yan Zhang, Jinzhao Jia, Qunyi Zhu. Asymmetric Combustion Characteristics and NOx emissions of a Down-Fired 300 MWe Utility Boiler at Different Boiler Loads. Energy, 2012, 37: 580–590. IF: 4.968 32. Min Kuang, Zhengqi Li, Qunyi Zhu, Hongyu Zhang, Xingying Zhu, Yan Zhang. Inner- and Outer-Secondary Air Distance-Effect Study within a Cold Small-Scale Model of a New Down-Fired 600 MWe Supercritical Utility Boiler. Energy & Fuels, 2012, 26: 417–424. IF: 3.024 33. Zhengqi Li, Min Kuang, Qunyi Zhu, Jinping Lai, Yan Zhang. Aerodynamic characteristics within a cold small-scale model for a down-fired 350 MWe utility boiler applying a multiple-injection and multiple-staging technology: Effect of the staged-air declination angle. Experimental Thermal and Fluid Science, 2012, 38: 184–194. IF: 3.204 34. Guangkui Liu, Zhengqi Li, Zhichao Chen, Xingying Zhu, Qunyi Zhu. Effect of the anthracite ratio of blended coals on the combustion and NOx emission characteristics of a retrofitted down-fired 660-MWe utility boiler. Applied Energy, 2012, 95: 196–201. IF: 7.9 35. Min Kuang, Zhengqi Li, Qunyi Zhu, Yang Wang, Lizhe Chen, Yan Zhang. Experimental gas/particle flow characteristics of a down-fired 600 MWe supercritical utility boiler at different staged-air ratios. Energy, 2012, 42: 411–423. IF: 4.968 36. Feng Ren, Zhengqi Li, Lingyan Zeng, Zhichao Chen and Qunyi Zhu. Numerical Simulation of Flow, Combustion, and NOx Emission Characteristics in a 300 MWe Down-Fired Boiler with Different OFA ratios. Numerical Heat Transfer, Part A: Applications, 2012, 62: 231–249. IF: 2.409 37. Min Kuang, Zhengqi Li, Chunlong Liu, Qunyi Zhu, Yan Zhang, Yang Wang. Evaluation of overfire air behavior for a down-fired 350 MWe utility boiler with multiple injection and multiple staging. Applied Thermal Engineering, 2012, 48: 164–175. IF: 3.771 38. Min Kuang, Zhengqi Li, Qunyi Zhu, Lizhe Chen, Yan Zhang, Jinping Lai. Gas/particle flow characteristics, combustion and NOx emissions of down-fired 600 MWe supercritical utility boilers with respect to two configurations of combustion systems. Energy & Fuels, 2012, 26: 3316–3328. IF: 3.024 39. Guangkui Liu, Qunyi Zhu, Zhengqi Li, Xingying Zhu, Zhichao Chen. New over-fire air arrangement and its air ratio optimization determined by aerodynamic characteristics in a cold small-scale model for a down-fired 660-MWe utility boiler. Experimental Thermal and Fluid Science, 2013, 44: 475–482. IF: 3.204 40. Min Kuang, Qunyi Zhu, Zhengqi Li, Xiang Zhang. Numerical investigation on combustion and NOx emissions of a down-fired 350 MWe utility boiler with multiple injection and multiple staging: Effect of the air stoichiometric ratio in the primary combustion zone. Fuel Processing Technology, 2013, 109: 32-42. IF: 3.204, Q2, Accession number: 000316515400047. IF: 3.956 41. Chunlong Liu, Zhengqi Li, Xiang Zhang, Xinjing Jing, Wenzhen Zhang, Zhichao Chen, Qunyi Zhu. Aerodynamic Characteristics within a Cold Small-scale Model for a Down-fired 350 MWe Supercritical Utility Boiler at Various Primary Air to Vent Air Ratios. Energy, 2012, 47: 294–301.IF: 4.968 42. 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Journal of Cleaner Production 获得授权的中国及美国发明专利 名称 2005及2007年授权 1、 李争起,孙锐,陈智超,孙绍增,吴少华,秦裕琨. 一种中心给粉旋流煤粉燃烧器,专利号:ZL 03 111101.7 2、 李争起,陈智超,孙锐. 防止水冷壁高温腐蚀和结渣的燃烧器墙式布置的锅炉装置,专利号:ZL 20051 0009772.2 3、 李争起,朱群益,赛俊聪,孙绍增,吴少华. 一种生物质与煤粉复合燃烧及生物质再燃脱硝的燃烧装置,专利号:ZL 20051 0009881.4 4、 李争起,任枫,高继慧,邱朋华,秦裕琨. 一种带浓淡煤粉燃烧装置的W形火焰炉,专利号:ZL 20051 0010015.7(W) 2008年授权 5、 李争起,任枫,秦裕琨,夏广龙. 一种具有二次风分风室倾斜装置的W形火焰炉,专利号:ZL 20071 0071703.3(W) 2009年授权 6、 李争起,靖剑平,陈智超,秦裕琨. 一种防止高温腐蚀的低NOx旋流燃烧装置,专利号:ZL 20071 0071815.9 7、 李争起,任枫,秦裕琨. 一种拱下二次风向下偏置的W型火焰炉,专利号:ZL 20061 0010089.5(W) 8、 李争起,陈智超,果志明,秦裕琨. 一种小油量气化燃烧、侧向点燃中心给粉的旋流燃烧器,专利号:ZL 20071 0072577.3 9、 李争起,任枫,陈智超,王静杰,徐振兴. 一种W型火焰炉局部通风防侧墙及翼墙水冷壁结渣装置,专利号:ZL 20081 0137054.7(W) 2010年授权 10、李争起,靖剑平,陈智超,刘光奎,刘春龙,秦裕琨,赵洋. 一种大速比中心给粉旋流煤粉燃烧器,专利号:ZL 20081 0137200.6 11、李争起,任枫,况敏,陈智超,阮成武,苏伟. 具有布置于上下炉膛交汇处的W型火焰锅炉燃尽风装置的锅炉,专利号:ZL 20081 0137177.0(W) 12、李争起,任枫,陈智超,陈曌,刘辉,秦明,陈力哲,邱朋华,高继慧,孙绍增,吴少华. 一种全混合W型火焰锅炉燃尽风装置,专利号:ZL 20081 0064934.6 13、李争起,陈智超,刘春龙,果志明,孙绍增. 小油量气化燃烧侧向多级开放式点燃中心给粉旋流燃烧器,专利号:ZL200810064783.4 14、李争起,任枫,陈智超,孙亮,刘辉. 防止侧墙水冷壁结渣的W型火焰锅炉,专利号:ZL ZL2007 10072221.X(W) 15、李争起,陈智超,赵洋,刘春龙. 一种防止一级燃烧室结渣的微油点火旋流煤粉燃烧装置,专利号:ZL 20081 0137506.1 16、秦裕琨,吴少华,高继慧,高建民,李争起. 内循环多级喷动流态化烟气脱硫塔,专利号:ZL 20051 0010119.8 17、高继慧,吴少华,秦裕琨,高建民,李争起,陈力哲. 中心钝体式流态化烟气净化装置,专利号:ZL 20061 0010580.8 18、刘 辉,吴少华,孙绍增,邱朋华,孙 锐,秦 明,李争起,秦裕琨. 用于垂直浓淡燃烧锅炉防结渣防高温腐蚀的煤粉燃烧装置,专利号:ZL 20071 0071803.6 19、刘 辉,吴少华,杜 谦,李争起,秦裕琨. 一种降低煤粉锅炉氮氧化物排放的方法及其使用的锅炉,专利号:ZL 20071 0071814.4 20、吴少华,刘 辉,孙绍增,邱朋华,孙 锐,秦 明,李争起,秦裕琨. 一种用于燃煤锅炉中低氮氧化物燃烧的方法,专利号:ZL 20071 0071816.3 21、吴少华,刘 辉,孙绍增,邱朋华,孙 锐,秦 明,李争起,秦裕琨. 利用生物质直燃再燃与烟气再循环工艺脱硝的方法及装置,专利号:ZL 20071 0071882.0 22、陈力哲,孙 锐,孙绍增,李争起,李瑞扬,吴少华,鞠胤宏,秦裕琨. 节能微量油、天然气点燃煤粉燃烧装置,专利号:ZL 20071 0072223.9 23、李争起,况敏,陈智超,阮成武,张福成. 一种稳燃防结渣采用直流缝隙式燃烧器的W型火焰锅炉装置,专利号:ZL 20081 0137213.3(W) 24、陈智超,李争起,范夙博,任枫,杨学海. 带有两级燃尽风的W型火焰锅炉,专利号:ZL 20091 0071322.4(W) 25、李争起,任枫,王静杰,陈智超,苏伟. 带用于W型火焰炉上的浓淡煤粉气流错列布置的燃烧装置,专利号:ZL 20091 0071320.5(W) 26、李争起,刘春龙,陈智超,赵洋, 胡志勇. 一种多油枪微油量点燃煤粉燃烧装置,专利号:ZL 20091 0304771.9(W) 27、李争起,刘春龙,陈智超,赵洋, 韩云峰. 二次浓缩双喷口微油量点燃煤粉装置,专利号:ZL 20091 0072137.7(W) 28、李争起,任枫,王琳,陈智超,张福成. 通过改变油二次风量来调节W火焰炉燃烧的方法,ZL 20091 0071981.8(W) 29、李争起,陈智超,况敏,朱群益,徐善田,张佳,杨连杰,吴远刚,邢超. 一种带有增程二次风喷口的W型火焰锅炉,ZL 20091 0309100.1(W) 30、陈智超,李争起,赵洋,刘春龙. 一种带有渐扩段的低阻力、低NOx的旋流煤粉燃烧器,ZL 20091 0071436.9(W) 31、李争起,陈智超,况敏,朱群益,张佳,申珊平,孔维光. 在炉拱上布置有缝隙式燃尽风喷口的W型火焰锅炉,ZL 20091 0309113.9(W) 32、李争起,陈智超,孙 锐,孙绍增,吴绍华,秦 明,刘 辉,秦裕琨. 一种低氮氧化物旋流煤粉燃烧器,ZL 20078 0017391.6 2011年授权 33、李争起,刘春龙,陈智超,孔维光,曾令艳,赵洋,杨连杰. 一种可提高初始点火热量的微油量点燃煤粉燃烧装置,ZL 201010 136703.9 34、陈智超,李争起,曾令艳,朱群益,邢超,胡志勇,徐振兴,申珊平,孔维光. 一种适用于不同负荷煤粉型锅炉的燃尽风装置,ZL 201010 150814.5 35、李争起,任枫,王静杰,陈智超,王琳. 一种提高W型火焰锅炉一次风煤粉气流温度的方法及装置,ZL 200810 209692.5(W) 2012年授权 36、陈智超,李争起,任枫,阮成武,刘春龙,孙绍增,孙锐. 用于W形火焰锅炉上的低阻煤粉浓淡分离装置,ZL 20091 0071683.9(W) 37、李争起,刘光奎,朱群益等. 四角通风防止翼墙及侧墙水冷壁结渣的W火焰锅炉,ZL 20101 0512616.9(W) 38、李争起,陈智超,况敏,朱群益,曾令艳,刘春龙,杨连杰,吴远刚,胡志勇,张佳,徐善田,申珊平,杨志强. 拱上单级引射分级燃烧的方法及实现该方法的W火焰锅炉,ZL 20101 0149622.2(W) 39、陈智超,李争起,曾令艳,朱群益,邢超,胡志勇,徐振兴. 一种布置于W火焰锅炉中的浓淡分离装置,ZL 20101 0145504.4(W) 40、陈智超,李争起,申珊平,朱群益,杨连杰. 一种用于工业窑炉的采用烟气再循环的旋流煤粉燃烧器,ZL 20101 0213627.7 2013年授权 41、李争起,陈智超,况敏,孙锐,朱群益,曾令艳,刘春龙,孙绍增,吴少华. 多次引射分级燃烧的方法,ZL 20101 0149634.5(W) 42、李争起,况敏,张岩,陈智超. 浓、淡煤粉喷口交错布置的多次引射分级燃烧W火焰锅炉,ZL 20111 0231069.1(W) 43、李争起,陈智超,况敏,吴远刚,张佳,杨连杰,徐善田,曾令艳,申珊平,杨志强. 一种带有边界二次风喷口的W火焰锅炉,ZL 20101 0156745.9(W) 44、李争起,刘光奎,陈智超,朱群益,杨志强. 用于液态排渣W火焰锅炉的低氮氧化物燃烧装置,ZL 20111 0111706.1(W) 2014年授权 45、李争起,陈智超,孙锐、孙绍增、吴少华、秦明、刘辉. LowNOx Swirl Coal Combustion Burner. US8479668B2. 美国专利 46、李争起,况敏,张翔,刘春龙,陈夏超. 一种W火焰锅炉燃烧装置,ZL 20121 0215499.9(W) 47、陈智超,李争起,王阳,张岩,赖金平,周航,朱群益,张宏宇,曾令艳. 一种旋流煤粉燃烧器非等间距布置的锅炉装置,ZL 20121 0103218.0 2015年授权 48、陈智超,李争起,李渊,朱群益,遆曙光,王振旺. 一种带有中心风管道的中心给粉旋流煤粉燃烧器,ZL 20111 0302031.9 49、李争起,况敏,刘春龙,井新经,曾令艳,陈智超,朱群益. 布置于拱上翼墙上方的W型火焰锅炉缝隙式燃尽风装置,ZL 20131 0224328.7(W) 50、李争起,况敏,井新经,等. 一种用于W型火焰锅炉的拱上燃烧器,ZL 20131 0224238.4(W) 2016年授权 51、曾令艳,陈智超,张锡乾,李争起,朱群益,王海明. 一种带有蒸汽升压装置的恩德粉煤气化炉,ZL 20141 0219094.1 2017年授权 52、李争起,陈智超,曾令艳,李争起,王浩鹏,蒋炳坤,秦明,秦裕琨.气化炉水循环与余热锅炉一体化形成自然水循环的装置,ZL 2015 1 0076596.8 53、陈智超,王浩鹏,蒋炳坤,李争起,曾令艳,秦明. 一种带有氮气、水蒸气、合成气驱动回料机构的恩德粉煤气化炉,ZL 20151 0054205.2 54、陈智超,刘晓英,曾令艳,李争起,王浩鹏,蒋炳坤,朱群益. 一种底部带有喷氧助熔的气流床气化炉,ZL 20151 0578776.6 55、陈智超,刘晓英,曾令艳,李争起,王浩鹏,蒋炳坤,朱群益. 一种用于熔渣气化炉底部的破渣装置,ZL 20151 0578777.0 56、陈智超,曾令艳,李争起,王浩鹏,蒋炳坤,刘晓英,朱群益. 一种空气送粉气化剂强旋转煤粉气化方法,ZL 20151 0578779.X 57、陈智超,王青祥,曾令艳,李争起,车苗苗,李晓光,宋民航,乔成成. 旋流煤粉燃烧器一、二次风偏心布置的W火焰锅炉,ZL 20151 1007686.8 (W) 2018年授权 58、王浩鹏,蒋炳坤,刘晓英,陈智超,曾令艳,李争起,朱群益. 一种气化炉停电自保护装置及方法,ZL 20151 0578778.5 59、陈智超,王青祥,曾令艳,李争起,李晓光,车苗苗,何额尔敦木图,张佳,刘一波. 一种用于W火焰锅炉的二次风偏置的旋流煤粉燃烧器,ZL 20151 1005439.4 (W) 60、宋民航,曾令艳,刘一波,李晓光,陈智超,李争起. 一种安装在超临界W火焰锅炉减少水冷壁温度偏差的装置,ZL 20161 0339798.1 (W) 61、陈智超,王青祥,车苗苗,曾令艳,李争起. 一种乏气风偏置的W火焰锅炉,ZL 20161 0605676.2 (W) 62、李争起,陈智超,况敏,孙锐,朱群益,曾令艳,刘春龙,孙绍增,吴少华.Method for multi-stage combustion with multi-ejection by a boiler(锅炉多次引射分级燃烧的方法),英国发明专利,GB2486630 (W) 63、李争起, 陈智超, 曾令艳, 王浩鹏, 刘晓英, 蒋炳坤,朱群益, 秦裕琨. Pulverized coal gasification furnace with multi-level feeding of high speed circulating gasification agent and gasification method. 美国专利,US10005973B2 64、曾令艳, 陈智超, 李争起, 王浩鹏, 刘晓英, 蒋炳坤, 朱群益. 一种煤粉气化炉烧嘴,ZL201510579027.5 65、陈智超,曾令艳,李争起,王浩鹏,蒋炳坤,刘晓英,朱群益. 一种气化剂强旋转煤粉气化方法,ZL201510579028.X 66、曾令艳,陈智超,李争起,王浩鹏,刘晓英,蒋炳坤,朱群益. 顶部及炉体同时供入气化剂强旋转煤粉气化方法,ZL2015 1 0578724.9 67、陈智超,方能、李晓光、刘一波、王浩鹏,曾令艳,李争起. 一种气化剂强旋转煤粉气化炉及气化方法,ZL 2016 1 0555061.3 68、陈智超,王浩鹏,乔大成,何额尔敦木图,曾令艳,李争起. 一种防止炉壁烧损的“水包氧”强旋转煤粉气化炉,ZL201610554990.2 2019年授权 70、陈智超,王浩鹏,何额尔敦木图,乔大成,曾令艳,李争起. 一种带有排渣装置的熔渣气化炉,ZL201610388719.6 71、陈智超,王浩鹏,乔大成,何额尔敦木图,曾令艳,李争起. 一种水冷壁与耐火砖壁面组合布置的气化炉装置,ZL201610388806.1 72、陈智超,王青祥,王炳南,曾令艳,李争起,张鑫. 用于W火焰锅炉高温还原区的多孔喷氨装置,ZL201710818917.6 73、陈智超,王青祥,王炳南,曾令艳,李争起,杨秀超. 带有内直外旋喷氨装置的旋流燃烧器W火焰锅炉,ZL201710818425.7 74、陈智超,王青祥,李鑫,张鑫,张晓研,曾令艳,李争起. 一种采用旋流煤粉燃烧器的多次引射分级W火焰锅炉,ZL201610949784.1 75、陈智超,王青祥,张晓研,曾令艳,李争起,高禄山. 一种采用再循环烟气的W火焰锅炉,ZL201710817716.4 76、陈智超,王青祥,张鑫,曾令艳,李争起,蕫喜斌. 一种能够提高煤粉燃尽的烟气再循环系统的W火焰锅炉,ZL201710817735.7 77、陈智超,刘涛,李争起,严蓉,曾令艳,张晓研. 一种炉内脱硝与两级燃尽风布置的低氮燃烧装置,ZL201710861939.0 78、陈智超,刘涛,王炳南,严蓉,曾令艳,李争起. 一种SNCR和OFA交错布置的卧式锅炉,ZL201710861198.6 79、陈智超,刘涛,蕫喜斌,严蓉,曾令艳,李争起. 一种用于工业煤粉锅炉的燃烧器中心喷氨的燃烧装置,ZL201710861941.8 80、李争起,张鑫,闫天舒,王青祥,陈智超,曾令艳. 一种炉拱非对称布置的 W火焰锅炉,专利号:ZL201910180628.7 81、李争起,张鑫,袁振华,王青祥,陈智超,曾令艳. 一种在后炉拱和冷灰斗后墙上方布置防偏风的 W 火焰锅炉,专利号:ZL201910180619.8 82、陈智超,王青祥,闫天舒,张鑫,曾令艳,李争起. 一种布置有旋流燃烧器和直流燃烧器的 W 火焰锅炉,专利号:ZL201910180605.6 83、陈智超,李争起,张鑫,王青祥,袁振华,曾令艳. 一种采用再循环烟气防止炉内流场偏斜的 W 火焰锅炉,专利号:ZL201910180627.2 2020年授权 84、陈智超,李争起,王青祥,陈庆伟,张鑫,曾令艳,李争起. 一种前炉拱和后炉拱具有高度差的 W 火焰锅炉,专利号:ZL201910181422.6 85、陈智超,李争起,张鑫,王青祥,韩徽,曾令艳. 一种前炉拱和后炉拱上燃烧器角度非对等的W 火焰锅炉,专利号:ZL201910180616.4 86、陈智超,李争起,张鑫,王青祥,闫天舒,曾令艳. 一种前墙、后墙二次风非对称的 W 火焰锅炉,专利号:ZL201910 181410.3 87、李争起,张鑫,韩徽,王青祥,陈智超,曾令艳. 一种前墙、后墙乏气非对等布置的 W 火焰锅炉,专利号:ZL201910181421.1 88、李争起,陈智超,张鑫,王青祥,陈庆伟,曾令艳. 一种双燃烧室 W 火焰锅炉,专利号:ZL201910181409.0 89、陈智超,严蓉,李鑫,曾令艳,李争起. 一种采用烟气再循环的中心给粉“Ω”形工业煤粉锅炉,专利号:ZL20171860350.9 90、陈智超,严蓉,刘涛,曾令艳,李争起. 一种采用烟气再循环的旋流煤粉燃烧装置及方法,专利号:ZL201710860450.6 91、陈智超,杨秀超,高禄山,严蓉,曾令艳,李争起. 中心给粉旋流煤粉燃烧器和燃尽风布置装置,专利号:ZL201710861938.6 92、李争起,方能,王家全,王青祥,陈智超,曾令艳,张斌. 一种气化剂与粗煤气全混合烧嘴,专利号:ZL201810496986.4 93、方能,李争起,刘书轩,谢成,陈智超,曾令艳,张斌. 一种气灰干式洁净处理的恩德分级气化系统,专利号:ZL201910815299.9 94、李争起,方能,谢成,刘书轩,陈智超,曾令艳,张斌. 一种四烧嘴正反旋转的气流床气化炉装置及气化方法,专利号:ZL201910760515.4 95、李争起,杜贺,韩徽,张鑫,曾令艳,陈智超. 一种用于W火焰锅炉的均分式二次风箱,专利号:ZL201910771110.0 96、李争起,杜贺,郑智巍,刘文杰,曾令艳,陈智超. 采用缝隙式燃烧器的W火焰锅炉,专利号:ZL201911320053.0 97、李争起,杜贺,郑智巍,刘文杰,曾令艳,陈智超. 一种采用旋流燃烧器的W火焰锅炉,专利号:ZL201911320056.4 2021年授权 98、陈智超,杜贺,李连铠,王青祥,李争起,刘文杰,曾令艳,朱群益. 一种布置防结渣风的 W 火焰锅炉,专利号:ZL202010184064.7 99、杜贺,李争起,谭紫莹,郑智巍,曾令艳,陈智超,朱群益. 拱上二次风和缝隙式乏气交错的 W 火焰锅炉及配风方法,专利号:ZL202010270539.4 100、曾令艳,杜贺,谭紫莹,李争起,郑智巍,陈智超,朱群益. 布置拱上二次风的缝隙式乏气后置 W 火焰锅炉及配风方法,专利号:ZL202010271187.4 101、曾令艳,郑智巍,李争起,陈智超. 应用于煤气化除渣系统的喷淋装置进行除渣的方法,专利号:ZL202010734705.1 102、杜贺,李争起,谭紫莹,郑智巍,曾令艳,陈智超,朱群益. 布置拱上二次风的缝隙式前置 型W 火焰锅炉及配风方法,专利号:ZL202010270574.6 103、李争起,杜贺,郑智巍,曾令艳,陈智超,朱群益. 油二次风协助着火自稳燃W 火焰锅炉及自稳燃方法,专利号:ZL202010878126.4 104、李争起,陈智超,曾令艳,王浩鹏,刘晓英,蒋炳坤,朱群益,秦裕琨. Vergassungsvorrichtung für Kohlepulver mit mehrstufiger Zuführung von Vergasungsmittel und starker Verwirbelung sowie entsprechendes Vergasungsverfahren,专利号:112015000112 105、李争起,杜贺,郑智巍,张鸣镝,曾令艳,陈智超,朱群益. 一种超低负荷浓煤粉气流自稳燃的w火焰锅炉的燃烧方法,专利号:ZL202010877329.1 106、陈智超,王浩鹏,何涛,李争起,曾令艳,高禄山. 一种带有水冷盘管保护的干煤粉气流床气化炉烧嘴,专利号:ZL201710322519.5 107、李争起,杜贺,郑智巍,曾令艳,陈智超,朱群益. 一种具有灵活性调峰自稳燃性能的W火焰锅炉的燃烧方法,专利号:ZL2020108773330.4 108、杜贺,李争起,郑智巍,刘文杰,曾令艳,陈智超,朱群益. 一种三层二次风协调下倾布置的W火焰锅炉,专利号:ZL202010184063.2 109、陈智超,袁振华,宋健,张博,李争起,曾令艳. 一种双水平炉膛对冲布置的工业煤粉锅炉,专利号:ZL 202011537602.2 110、陈智超,袁振华,宋健,关硕,李争起,曾令艳. 一种用于工业煤粉炉尾部烟道防积灰的多通道结构,专利号:ZL 202011499538.3 111、杜贺,李争起,谭紫莹,郑智巍,曾令艳,陈智超,朱群益. 布置拱上二次风的缝隙式乏气前置型W火焰锅炉及配方方式,专利号:ZL 202010270574.6 112、李争起,杜贺,闫天舒,郑智巍,曾令艳,陈智超. 布置拱上二次风喷口的乏气后置型W火焰锅炉及配风方法,专利号:ZL 202010270540.7 113、曾令艳,郑智巍,陈智超,李争起. 煤气化系统的联合除渣装置及其应用方法,专利号:ZL 202010734718.9 2022年授权 114、陈智超,乔彦宇,郑玉,袁琳璇,曾令艳,李争起. 一种混烧低挥发分固体燃料的预燃室燃烧装置,专利号:ZL 202110177537.5 115、陈智超,乔彦宇,郑玉,曾令艳,李争起. 一种混烧低挥发分固体燃料的两级燃烧室燃烧装置,专利号:ZL 202110168825.4 116、杜贺,李争起,谭紫莹,郑智巍,曾令艳,陈智超,朱群益. 布置拱上二次风喷口的乏气前置W火焰锅炉及配风方法,专利号:ZL 202010270528.6 117、陈智超,袁振华,张博,李争起,曾令艳. 一种径向分级低NOx煤粉燃烧装置,专利号:ZL 202110038317.4 118、陈智超,乔彦宇,关硕,曾令艳,李争起. 一种用于对冲燃烧锅炉下层的燃烧系统及使用方法,专利号:ZL 202110168820.1 119、陈智超,杨秀超,高禄山,严蓉,曾令艳,李争起. 一种防止水冷壁结渣的中心给粉旋流煤粉燃烧装置,专利号:ZL 201710861231.5 120、陈智超,乔彦宇,郑玉,曾令艳,李争起. 一种可变扩口的旋流煤粉燃烧器,专利号:ZL 202110175367.7 121、陈智超,李佳伟,袁琳璇,李连铠,曾令艳,李争起. 一种采用化工粗合成气增加固废燃尽的装置,专利号:ZL 202110177510.6 122、曾令艳,谭紫莹,路跃,陈智超,李争起. 一种带有喷淋降温装置的U形煤气化余热锅炉及降温方法,专利号:ZL 202011209560.X 123、陈智超,李佳伟,袁琳璇,李连铠,曾令艳,李争起. 一种采用高温一二次风燃尽固废的装置,专利号:ZL 202110168829.2 124、陈智超,乔彦宇,关硕,曾令艳,李争起. 锅炉两侧墙上设有预燃室燃烧器的燃烧方法,专利号:ZL 202110175350.1 125、陈智超,乔彦宇,关硕,曾令艳,李争起. 一种在电站前墙或后墙锅炉的的燃烧系统及方法,专利号:ZL 202110177341.6 126、李晓光,李争起,张宁,张鑫,曾令艳,陈智超. 一种采用循环烟气型缝隙式直流煤粉燃烧器的W火焰锅炉,专利号:ZL 202110679429.8 127、李争起,路跃,张鸣镝,刘晓英,陈智超,曾令艳. 一种引射器喷嘴的保护装置及使用方法,专利号:ZL 202110419591.6 128、张鸣镝,姜广飞,张鸣镝,李争起,房凡,张鑫,陈智超,曾令艳. 一种适用于宽煤种燃烧的W火焰锅炉及燃烧方法,专利号:ZL 202111415325.2 129、李争起,黄椿朝,姜广飞,刘政,陈智超. 燃烧锅炉防止水冷壁高温腐蚀装置及锅炉防腐蚀方法,专利号:ZL 202111164511.3 我的新闻 名称 李争起教授提名为2023年度中国工程院有效院士候选人2023-08-31 李争起教授等编写的专著由中国科技出版传媒股份有限公司出版2020-11-5 李争起教授为头雁的“清洁能源与热科学技术团队”入选黑龙江省首批“头雁”团队2019-9-5 李争起教授的博士生王青祥荣获2019年“吴仲华优秀研究生奖”2019-8-27 李争起教授入围爱思唯尔2017中国高被引学者榜单2018-12-15 李争起教授等编写的专著获2018年度国家学术著作出版基金资助2018-11-27 李争起教授参加《Frontiers in Energy》第四届编委会第二次会议2018-11-13 李争起教授团队参加第18届国际煤炭科学技术大会及2017中澳能源论坛2017-9-29 哈工大23位世界级学者入选爱思唯尔2016年中国高被引榜单2017-2-28 李争起教授入围爱思唯尔2016中国高被引学者榜单2017-2-27 2016年哈工大十大新闻——李争起教授团队获国家技术发明奖二等奖2016-12-31 李争起教授参加《Frontiers in Energy》编委会2016-12-16 李争起教授作为博士生导师代表在博士学位授予仪式上致辞2016-7-22 哈工大报刊登李争起教授科研团队介绍2016-3-30 2015年中国高被引学者榜单发布2016-1-29 我校在W火焰锅炉燃烧技术研究方面取得新成果2016-2-28 李争起教授团队获2015年度国家技术发明二等奖2016-1-7 李争起团队新技术在塘寨电厂600MW超临界W火焰锅炉上成功应用2015-12-09 博士生国际交流计划(第五批)材料、能源学院公示信息2015-6-10 哈工大20位学者入选爱思唯尔2014年中国高被引学者榜单2015-3-3 2014年黑龙江省科学技术奖推荐授奖项目公告2014-06-09 关于公布推荐免试入学硕士生先期选择导师结果的通知2012-1-10 2010年黑龙江省科学技术奖励决定2010-11-01 第十届《21世纪的热能动力》学生学术研讨会开幕式顺利召开2010-5-28 研究生学术活动月——能源高效利用与环境保护研讨会2009-11-20 实验学院第二届学生学术论坛分论坛圆满结束:2009-4-27 “第八届黑龙江省青年科技奖”获得者风采--李争起教授2007-12-24 燃烧工程研究所举行第一百期学术活动总结报告2006-12-31 哈工大2004年教育部“新世纪优秀人才支持计划”和“创新团队”入选名单2005-1-7 校友英华——李争起2004-12-30 以百分之百的努力,换大家百分之百的满意2004-8-19 李争起 夏新林教授荣获第八届高等院校青年教师奖2002-9-7 哈工大能源科技学科获2项第八届霍英东教育基金奖2002-3-7 我们的动态 名称 王青祥博士在第18届国际煤炭科学技术大会及2017中澳能源论坛上做口头报告2017年9月29日 祝贺实验室研二同学顺利通过答辩,获得硕士学位!2017年7月1日 祝贺宋民航博士顺利通过答辩,获得博士学位!2017年5月23日 李争起教授作为博士生导师代表在博士学位授予仪式上致辞! 2016年7月22日 祝贺李松博士顺利通过答辩,获得博士学位! 2016年7月4日 李争起教授一行到印度介绍旋流及W火焰锅炉低NOx技术。2016年6月13日 哈工大报刊登李争起教授科研团队介绍! 2016年3月30日 祝贺宋民航撰写的论文被Environmental Science & Technology(SCI)收录! 2016年1月12日 实验室元旦表演及聚餐! 2015年12月29日 祝贺李争起教授团队燃烧新技术在塘寨电厂W火焰锅炉上成功应用! 2015年12月2日 实验室中秋佳节聚餐! 2015年9月27日 祝贺遆曙光博士获得博士学位,顺利毕业! 2015年7月18日