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研究方向:
1.固体燃料的高效清洁利用Efficient and Clean Utilization of Solid Fuels

2.节能环保技术Energy saving and environmental protection technology

3.污染物排放控制Pollutant Emission Control
  1. 个人简介及主要荣誉称号
  2. 教学与人才培养情况
  3. 主要科研项目情况
  4. 主要获奖
  5. 代表性论著
  董长青,男,1973年生,博士,教授,博士研究生导师,北京市师德标兵,北京市优秀班主任,国家“万人计划”科技创业领军人才,科技部科技创新创业人才,教育部新世纪优秀人才。

  教学方面:华北电力大学新能源科学与工程专业主要创建人,“紧跟国家战略需求的新能源专业创建与发展模式”获北京市高等教育教学成果特等奖,2012年至今主讲专业核心课程《燃烧理论与设备》(64学时),承担专业实践课《生物能源与废弃物高效清洁利用》(6周)。连续8年担任本科生班主任,所带班级获北京市先进班集体、“先锋杯”五四红旗团支部。

  科研方面:从事生物质能源的高效清洁利用研究,先后主持国家科技支撑计划、国家高技术研究发展计划(863)、国家自然科学基金等国家级项目5项,主持省部级项目11项,参加国家重点基础研究发展计划(973)2项,完成企业委托项目40余项。发表论文249篇,其中SCI收录74篇,授权发明专利56项,软件著作权9项,出版《生物质发电技术》、《生物质热转化技术》、《垃圾能源化利用与管理》著作3部。获教育部科技进步一等奖2项(2016年,2018年)、教育部自然科学二等奖(2012年)、中国南方电网公司科技进步一等奖(2013年)、中国电力科学技术进步二等奖(2013年)。成果已在41家生物质发电厂和62家火力发电厂成功应用。
1.教学课程:

  《专业英语阅读热能》,2005-2010年,16学时

  《循环流化床锅炉》(研究生),2006-2012年,40学时

  《锅炉原理》,2005起,72学时

  《燃烧理论与设备》,2019年起,64学时

2.学生培养

  毕业博士:安璐、胡笑颖、康鹏、吴令男、陶君、张智博、梁志永、王洋、蒋晓燕、叶小宁、刘吉、周建强、IQABAL,TAHIR

  毕业硕士:白俊杰、韦杰、张世平、朱榜荣、杨睿、李永胜、王亮、单亮、何磊、梁慧、李小华、张晓磊、李君、崔亚明、王倩、董智慧、王恒、盛淑慧、张汉飞、蒋景周、张腾、赵芳芳、刘甜、张志飞、巨少达、 ……

3. 学生获得荣誉

  吴令男,北京市普通高等学校优秀毕业生(博士),2017,导师:董长青

  叶小宁,北京市普通高等学校优秀毕业生(博士),2018,导师:董长青

  叶小宁,北京市普通高等学校优秀毕业生(硕士),2015,导师:董长青

  刘吉,北京市普通高等学校优秀毕业生(博士),2019,导师:董长青

   ……
1. 国家自然科学基金,基于自由基调控的生物质选择性热解制备高值产物的基础研究,2017.10-2021.12,60万元

2. “973计划”课题1,高参数机组炉内高效燃烧与多场协同污染物控制中SCR调控及联合脱除,2015.1-2019.12,188.1万元

3. 科技部科技支撑计划,低能耗固体成型燃料制备关键技术及装备研究,2012.1-2014.12, 841 万元

4. 国家863计划,生物质气再燃脱除燃煤流化床一氧化二氮关键技术研究, 2008.12-2010.11,100万元

5. 国家自然科学基金,磁性固体磷酸中低温快速催化热解生物质多联产的基础研究, 2012.10-2016.12,80万元
1. 教育部,2018.12,多温区多功能系列SCR脱硝催化剂与低能耗脱硝技术研发及应用, 2018年度高等学校科学研究优秀成果奖(科技进步奖)一等奖,第12完成人

2. 教育部,2016.12,生物质电站安全高效发电关键技术,2016年度高等学校科学研究优秀成果奖(科技进步奖)一等奖,第5完成人

3. 中国南方电网公司,2013.9, 生物质直燃发电关键技术研究及工程实践,2013年获中国南方电网公司科技进步奖一等奖,第12完成人

4. 中国电机工程学会,2014.1,生物质电站安全经济运行关键技术,2013年获中国电力科学技术进步奖二等奖,第2完成人

5. 教育部,2013.1,生物质热解气化多相流动反应机制和应用基础,2012年度高等学校科学研究优秀成果奖(自然科学奖)二等奖,第4完成人
[1] 董长青,陆强,胡笑颖. 生物质热化学转化技术,科学出版社,2017

[2] 董长青,胡笑颖,肖显斌. 生物质能源产业科技创新发展战略(生物质混燃部分). 化学工业出版社. 2014

[3] Changqing DONG,Xiaoying Hu. Technologies for Converting Biomass to Useful Energy: Combustion, Gasification, Pyrolysis, Torrefication(chapter 4). CRC Press. 2013

[4] 赵莹,程桂石,董长青. 垃圾能源化利用与管理. 上海科学技术出版社. 2013

[5] 杨勇平,董长青,张俊姣. 生物质发电技术. 中国水利水电出版社. 2007

文章:

[1] Lu Qiang, Zhang Zhibo, Dong Changqing, Zhang Xiaoyuan, Cui Fangming. Improved Visible-light Photocatalytic Activity of Bi-crystalline Mesoporous Titania Codoped with Carbon and Silver. JOURNAL OF INORGANIC MATERIALS, 2014, 29, 12: 1333- 1338

[2] Qin Wu, Wu Lingnan, Zheng Zongming, Dong Changqing, Yang Yongping. Lignin Hydrolysis and Phosphorylation Mechanism during Phosphoric Acid-Acetone Pretreatment: A DFT Study. MOLECULES, 2014, 19, 12: 21335- 21349

[3] Lu Qiang, Ye Xiaoning, Zhang Zhibo, Dong Changqing, Zhang Ying. Catalytic fast pyrolysis of cellulose and biomass to produce levoglucosenone using magnetic SO42-/TiO2-Fe3O4. BIORESOURCE TECHNOLOGY, 2014, 171: 10- 15

[4] Wang Tipeng, Ye Xiaoning, Yin Jun, Jin Zaixing, Lu Qiang, Zheng Zongming, Dong Changqing. Fast pyrolysis product distribution of biopretreated corn stalk by methanogen. BIORESOURCE TECHNOLOGY, 2014, 169: 812- 815

[5] Wang Ligang, Yang Yongping, Dong Changqing, Morosuk Tatiana, Tsatsaronis George. Parametric optimization of supercritical coal-fired power plants by MINLP and differential evolution. ENERGY CONVERSION AND MANAGEMENT, 2014, 85: 828- 838

[6] Wang Ligang, Yang Yongping, Dong Changqing, Morosuk Tatiana, Tsatsaronis George. Systematic Optimization of the Design of Steam Cycles Using MINLP and Differential Evolution. JOURNAL OF ENERGY RESOURCES TECHNOLOGY-TRANSACTIONS OF THE ASME, 2014, 136, 3: 31601

[7] Wang Tipeng, Ye Xiaoning, Yin Jun, Lu Qiang, Zheng Zongming, Dong Changqing. Effects of biopretreatment on pyrolysis behaviors of corn stalk by methanogen. BIORESOURCE TECHNOLOGY, 2014, 164: 416- 419

[8] Hu Xiaoying, Wu Lingnan, Ju Shaoda, Dong Changqing, Yang Yongping, Qin Wu. Mechanistic Study of Catalysis on the Decomposition of N2O. ENVIRONMENTAL ENGINEERING SCIENCE, 2014, 31, 6: 308- 316

[9] Zhang Zhibo, Lu Qiang, Ye Xiaoning, Xiao Lingping, Dong Changqing, Liu Yongqian. Selective Production of Phenolic-rich Bio-oil from Catalytic Fast Pyrolysis of Biomass: Comparison of K3PO4, K2HPO4, and KH2PO4. BIORESOURCES, 2014, 9, 3: 4050- 4062

[10] Qin Wu, Zheng Zongming, Kang Peng, Dong Changqing, Yang Yongping. Solution-Sensitivity and Comprehensive Mechanism of Lignin Breakdown during the Phosphoric Acid-Acetone Pretreatment Process. BIORESOURCES, 2014, 9, 1: 628- 641

[11] Zhang Zhibo, Lu Qiang, Ye Xiaoning, Li Wentao, Hu Bin, Dong Changqing. Production of phenolic-rich bio-oil from catalytic fast pyrolysis of biomass using magnetic solid base catalyst. ENERGY CONVERSION AND MANAGEMENT, 2015, 106: 1309- 1317

[12] Wu Lingnan, Hu Xiaoying, Qin Wu, Dong Changqing, Yang Yongping. Effect of sulfation on the surface activity of CaO for N2O decomposition. APPLIED SURFACE SCIENCE, 2015, 357: 951-960

[13] Gao Pan, Xue Lu, Lu Qiang, Dong Changqing. Effects of Alkali and Alkaline Earth Metals on N-Containing Species Release during Rice Straw Pyrolysis. ENERGIES, 2015, 8, 11: 13021- 13032

[14] Zhang Zhibo, Lu Qiang, Ye Xiaoning, Li Wentao, Hu Bin, Dong Changqing. Selective Analytical Production of 1-Hydroxy-3,6-dioxabicyclo[3.2.1]octan-2-one from Catalytic Fast Pyrolysis of Cellulose with Zinc-Aluminium Layered Double Oxide Catalyst. BIORESOURCES, 2015, 10, 4: 8295- 8311

[15] Zhang Zhibo, Lu Qiang, Ye Xiaoning, Wang Tipeng, Wang Xianhua, Dong Changqing. Selective Production of Levoglucosenone from Catalytic Fast Pyrolysis of Biomass Mechanically Mixed with Solid Phosphoric Acid Catalysts. BIOENERGY RESEARCH, 2015, 8, 3: 1263- 1274

[16] Zhang Zhibo, Lu Qiang, Ye Xiaoning, Li Wentao, Zhang Ying, Dong Changqing. Selective production of 4-ethyl phenol from low-temperature catalytic fast pyrolysis of herbaceous biomass. JOURNAL OF ANALYTICAL AND APPLIED PYROLYSIS, 2015, 115: 307- 315

[17] Wang Tipeng, Dong Xiaochen, Jin Zaixing, Su Wenjing, Ye Xiaoning, Dong Changqing, Lu Qiang. Pyrolytic characteristics of sweet potato vine. BIORESOURCE TECHNOLOGY, 2015, 192: 799- 801

[18] Tao Jun, Lu Qiang, Dong Changqing, Du Xiaoze, Dahlquist Erik. Effects of electric current upon catalytic steam reforming of biomass gasification tar model compounds to syngas. ENERGY CONVERSION AND MANAGEMENT, 2015, 100: 56- 63

[19] Hu Xiaoying, Wu Lingnan, Dong Changqing. Thermodynamic Analysis of a Sludge Drying and Incinerating Process System. JOURNAL OF RESIDUALS SCIENCE & TECHNOLOGY, 2015, 12: S61- S66

[20] Qin Wu, Lin Changfeng, Long Dongteng, Xiao Xianbin, Dong Changqing. Reaction Activity and Deep Reduction Reaction Mechanism of a High Index Iron Oxide Surface in Chemical Looping Combustion. ACTA PHYSICO-CHIMICA SINICA, 2015, 31, 4: 667- 675

[21] Wu Lingnan, Qin Wu, Hu Xiaoying, Dong Changqing, Yang Yongping. Mechanism study on the influence of in situ SOx removal on N2O emission in CFB boiler. APPLIED SURFACE SCIENCE, 2015, 333: 194- 200

[22] Qin Wu, Wang Yang, Lin Changfeng, Hu Xueqing, Dong Changqing. Possibility of Morphological Control To Improve the Activity of Oxygen Carriers for Chemical Looping Combustion. ENERGY & FUELS, 2015, 29, 2: 1210- 1218

[23] Wu Lingnan, Qin Wu, Hu Xiaoying, Ju Shaoda, Dong Changqing, Yang Yongping. Decomposition and reduction of N2O on CaS (100) surface: A theoretical account. SURFACE SCIENCE, 2015, 632: 83- 87

[24] Tao Jun, Dong Changqing, Lu Qiang, Liao Hangtao, Du Xiaoze, Yang Yongping, Dahlquist Erik. Catalytic Cracking of Biomass High-Temperature Pyrolysis Tar Using NiO/AC Catalysts. INTERNATIONAL JOURNAL OF GREEN ENERGY, 2015, 12, 8: 773- 779

[25] Lin Changfeng, Qin Wu, Dong Changqing. H2S adsorption and decomposition on the gradually reduced alpha-Fe2O3(001) surface: A DFT study. APPLIED SURFACE SCIENCE, 2016, 387: 720- 731

[26] Lin Changfeng, Qin Wu, Dong Changqing. Reduction effect of alpha-Fe2O3 on carbon deposition and CO oxidation during chemical-looping combustion. CHEMICAL ENGINEERING JOURNAL, 2016, 301: 257- 265

[27] Wu Lingnan, Hu Xiaoying, Qin Wu, Gao Pan, Dong Changqing, Yang Yongping. Effect of CaO on the selectivity of N2O decomposition products: A combined experimental and DFT study. SURFACE SCIENCE, 2016, 651: 128- 136

[28] Jiang XiaoYan, Lu Qiang, Ye XiaoNing, Hu Bin, Dong ChangQing. Experimental and Theoretical Studies on the Pyrolysis Mechanism of beta-1-Type Lignin Dimer Model Compound. BIORESOURCES, 2016, 11, 3: 6232- 6243

[29] Qin Wu, Lin Changfeng, Wang Jianye, Xiao Xianbin, Dong Changqing, Wei Li. Study on Reaction Characteristics of Chemical-Looping Combustion between Maize Stalk and High Index Facet Iron Oxide. ENERGIES, 2016, 9, 8: 656

[30] Wang Tipeng, Zhang Runhe, Su Wenjing, Lu Qiang, Dong Changqing. Study on pyrolysis characteristics of red pepper stalks to analyze the changes of pyrolytic behaviors from xylophyta to herbage. JOURNAL OF ANALYTICAL AND APPLIED PYROLYSIS, 2016, 120: 330- 333

[31] Zhang Junjiao, Qin Wu, Dong Changqing, Yang Yongping. Density Functional Theory Study of Elemental Mercury Adsorption on Fe2O3[104] and Its Effect on Carbon Deposit during Chemical Looping Combustion. ENERGY & FUELS, 2016, 30, 4: 3413- 3418

[32] Zhang Junjiao, Zhu Jinqi, Lin Changfeng, Wang Tipeng, Dong Changqing, Qin Wu. Pretreatment mechanism of beta-O-4 lignin during phosphoric acid-acetone process based on density functional theory and molecular dynamic simulations. INTERNATIONAL JOURNAL OF AGRICULTURAL AND BIOLOGICAL ENGINEERING, 2016, 9, 2: 127- 136

[33] Wang Yang, Xiang Yu, Wang Dongxu, Dong Changqing, Yang Yongping, Xiao Xianbin, Lu Qiang, Zhao Ying. Effect of Sodium Oxides in Ash Composition on Ash Fusibility. ENERGY & FUELS, 2016, 30, 2: 1437- 1444

[34] Jiang Xiaoyan, Lu Qiang, Hu Bin, Liu Ji, Dong Changqing, Yang Yongping. A Comprehensive Study on Pyrolysis Mechanism of Substituted -O-4 Type Lignin Dimers. INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES, 2017, 18, 11: 2364

[35] Wang Yang, Wu Hao, Sarossy Zsuzsa, Dong Changqing, Glarborg Peter. Release and transformation of chlorine and potassium during pyrolysis of KCl doped biomass. FUEL, 2017, 197: 422- 432

[36] Liang Zhiyong, Qin Wu, Dong Changqing. Experimental and Theoretical Study of the Interactions between Fe2O3/Al2O3 and CO. ENERGIES, 2017, 10, 5: 598

[37] Wang Shi Yong, Xiao Xue, Wang Xiao Qiang, Dong Chang Qing, Li Wen Yan, Lu Qiang, Wang Ti Peng. Potassium recovery from the fly ash from a grate boiler firing agro-residues: effects of un burnt carbon and calcination pretreatment. JOURNAL OF CHEMICAL TECHNOLOGY AND BIOTECHNOLOGY, 2017, 92, 4: 801- 807

[38] Wang Yang, Wang Dongxu, Dong Changqing, Yang Yongping. The behaviour and reactions of sodium containing minerals in ash melting process. JOURNAL OF THE ENERGY INSTITUTE, 2017, 90, 2: 167- 173

[39] Lu Qiang, Zhang Zhibo, Ye Xiaoning, Li Wentao, Hu Bin, Dong Changqing, Yang Yongping. Selective production of 4-ethyl guaiacol from catalytic fast pyrolysis of softwood biomass using Pd/SBA-15 catalyst. JOURNAL OF ANALYTICAL AND APPLIED PYROLYSIS, 2017, 123: 237 - 243

[40] Zhao Ying, Cheng Guishi, Long Fei, Liu Lu, Dong Changqing, Wang Xiaoqiang, Zhao Jin. Analysis and Prediction of Corrosion of Refractory Materials by Potassium during Biomass Combustion-Thermodynamic Study. MATERIALS, 2018, 11, 12: 2584

[41] Wang Tipeng, Ai Yinong, Peng Li, Zhang Runhe, Lu Qiang, Dong Changqing. Pyrolysis characteristics of poplar sawdust by pretreatment of anaerobic fermentation. INDUSTRIAL CROPS AND PRODUCTS, 2018, 125: 596- 601

[42] Xiao Xianbin, Liu Ji, Gao Anni, Zhouyu Mengqiu, Liu Binghan, Gao Manda, Zhang Xiaolei, Lu Qiang, Dong Changqing. The performance of nickel-loaded lignite residue for steam reforming of toluene as the model compound of biomass gasification tar. JOURNAL OF THE ENERGY INSTITUTE, 2018, 91, 6: 867- 876

[43] Zhao Ying, Cheng Guishi, Xiang Yu, Long Fei, Dong Changqing. Thermodynamic Study of the Corrosion of Refractories by Sodium Carbonate. MATERIALS, 2018, 11, 11: 2197

[44] Qin Wu, Wang Jianye, Luo Laixing, Liu Lu, Xiao Xianbin, Zheng Zongming, Sun Shuai, Hu Xiaoying, Dong Changqing. Chemical looping reforming of ethanol-containing organic wastewater for high ratio H-2/CO syngas with iron-based oxygen carrier. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2018, 43, 29: 12985- 12998

[45] Xiao Xianbin, Qin Wu, Wang Jianye, Li Junhao, Dong Changqing. Effect of surface Fe-S hybrid structure on the activity of the perfect and reduced alpha-Fe2O3(001) for chemical looping combustion. APPLIED SURFACE SCIENCE, 2018, 440: 29- 34

[46] Nie Xiangxin, Zheng Zongming, Lu Qiang, Dong Chongqing, Qin Wu, Wang Tipeng. Softening of wastewater from wet flue gas desulfurization process based on internal airlift loop reactor (IALR). DESALINATION AND WATER TREATMENT, 2018, 109: 125- 131

[47] Jiang Xiaoyan, Lu Qiang, Hu Bin, Liu Ji, Dong Changqing, Yang Yongping. Intermolecular interaction mechanism of lignin pyrolysis: A joint theoretical and experimental study. FUEL, 2018, 215: 386- 394

[48] Hu Bin, Lu Qiang, Jiang Xiaoyan, Dong Xiaochen, Cui Minshu, Dong Changqing, Yang Yongping. Pyrolysis mechanism of glucose and mannose: The formation of 5-hydroxymethyl furfural and furfural. JOURNAL OF ENERGY CHEMISTRY, 2018, 27, 2: 486- 501

[49] Zhou Jianqiang, Gao Pan, Dong Changqing, Yang Yongping. Effect of Temperature and Mineral Matter on the Formation of NOx Precursors during Fast Pyrolysis of 2,5-Diketopiperazine. ENERGIES, 2018, 11, 3: 629

[50] Wang Tipeng,Ai Yinong,Li Hang,Lu Qiang,Dong Changqing. Comparative study of pyrolysis characteristics of bamboo powder and grape vine by anaerobic fermentation pretreatment. JOURNAL OF ANALYTICAL AND APPLIED PYROLYSIS, 2019, 140: 93- 101

[51] Qin Wu, Chen Shubo, Ma Bingyun, Wang Jianye, Li Junhao, Liang Rui, Xu Zhenyao, Liu Lu, Dong Changqing, Zhang Hanfei. Methanol solution promoting cotton fiber chemical looping gasification for high H-2/CO ratio syngas. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2019, 44, 14: 7149-7157

[52] Qin Wu, Wang Jianye, Gao Qiang, Jiao Liguo, Chen Xinnong, Chen Shubo, Jia Kaijun, Xiao Xianbin, Zheng Zongming, Zhao Jin, Liu Lu, Dong Changqing. Corn-Stalk Chemical Looping Combustion Using tert-Butanol Waste Solution. ENERGY & FUELS, 2019, 33, 2: 1622- 1630
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