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姓 名 张世红 性 别
职 称 教授(博导) 毕业学校
个人主页
联系方式 027-87542417-8210
邮 箱 shzhang@hust.edu.cn
通讯地址 武汉市珞喻路1037号华中科技大学煤燃烧国家重点实验室
个人资料简介
张世红,男,工学博士,二级教授,博士生导师,湖北省优秀博士论文获得者,中国电力行业CFB协作网专家委员会委员,煤燃烧与低碳利用全国重点实验室高温工业过程低碳燃烧技术团队负责人。主要从事生物质等固体燃料、天然气/氢气/气化燃气等气体燃料热化学转化(热解、气化、燃烧)机理研究、关键技术研发和应用工作,致力于提高生物质气化制氢、制合成气效率和生物炭高值化利用,通过富氧燃烧、低氮燃烧、低碳燃料掺烧等源头控制技术和烟气多污染物催化高效一体化脱除,降低高温工业过程硫、氮、尘等常规污染物和二氧化碳、有机物等污染物的排放。先后负责完成了国家自然科学基金、国家重点研发课题、攻关项目20余项,节能减排技术应用课题50余项,研发了10~130t/h工业流化床锅炉系列新产品和多种热功率流化床高温烟气炉,发表论文200余篇,授权发明专利38项,多项成果实现了产业化转化。获得国家科技二等奖1项、省部级一、二等奖各3项和中国优秀专利奖,负责组织建设了全球首套3MW全流程富氧燃烧碳捕获平台、亚洲首个35MW富氧燃烧示范项目。
欢迎能源、环境、化工、材料等学科青年才俊加入团队!邮箱shzhang@hust.edu.cn,电话13307107197。

教育及工作经历

    1996/09–2001/12,华中科技大学,能源与动力工程学院,博士,导师:郑楚光
    1988/09–1991/06,华中理工大学,动力工程系,硕士,导师:林志杰,刘德昌
    1984/09–1988/06,华中理工大学,能源与动力工程学院,学士
    科研与学术工作经历:
    1、2018/05-至今   全国重点实验室高温工业过程低碳燃烧技术团队负责人
    2. 2011/10-至今   华中科技大学碳捕集、利用与封存研究所,副所长
    3. 2004/10-至今   华中科技大学能源与动力工程学院,教授,博士生导师
    4. 1999/07-2004/09 华中理工大学动力工程系,副教授
    5. 1993/10-1999/06 华中理工大学动力工程系,讲师
    6. 1996/08-1996/12 法国国家科学中心材料与工艺研究所,访问学者
    7. 1991/05-1993/09 华中理工大学动力工程系,助教

研究方向

    生物质/H2/NH3等低碳燃料与煤、天然气耦合清洁燃烧降碳机理与技术
    生物质、垃圾、污泥等固废流化床热解/气化资源化(制H2、合成气)、能源化利用机理与技术;
    工业锅炉/炉窑提质增效降碳机理与技术。

科研项目

    1.国家重点研发计划课题,煤/生物质耦合燃烧清洁发电过程中CO2的生成及碳富集规律,2024/12-2028/12,330万,主持,在研
    2.国家自然科学基金面上项目,51976075,生物炭在土壤中的老化机制及其与重金属固定的交互作用, 2020/01-2023/12,58万元,主持
    3.国家重点研发计划课题,2018YFB0605204,有机污染物与其他污染物的协同控制技术,2018/05-2021/04,463万,主持,在研
    4.国家重点专项子课题,2016YFB0600203-02,660MW高效超超临界循环流化床锅炉提效技术研究-660MW高效超超临界循环流化床锅炉发电机组的低能耗技术研究,2016/07-2020/12,90万,主持
    5.国家自然科学基金面上项目,51576088,生物炭与土壤混合体系中重金属运移与固定机制研究,2016/01-2019/12,64万元,主持
    6.国家自然科学基金面上项目,51276075,富氮生物质焦联合脱除碳硫氮污染物的机理研究,2013/01-2016/12,80万元,已结题,主持
    负责完成的一些企业合作项目:
    1.生物质气化燃气送氧化铝焙烧炉燃烧关键技术研发及应用(技术负责),2023.02-2024.12,260万
    2.350MW正压直吹式混烧锅炉掺烧生物质燃料可行性研究,2023.5-2024.10,40万
    3.煤炭富氧水蒸气流化床气化实验与模拟研究,2019.4-2021.6,100万
    4.生物质流化床气化炉系列化技术研究,2018.4-2019.12,150万
    5.生活垃圾焚烧炉CFD模拟设计,2017.5-2018.4,35万
    6.燃用甲醇1.25MPa、2t/h饱和蒸汽锅炉研发设计,2016.6-2017.12,20万
    7.烤烟用生物质衍生高热值燃料流化床燃烧技术研发,2012.3-2014.12,30万
    8.75t/h 链条锅炉改造为循环流化床锅炉技术,2008.12-2011.12,106万
    9.双床并置流化床超高温烟气发生技术,2005.5-2008.12,55万
    10. 35t/h CFB锅炉完善化改造技术,2006.8-2008.12,68万
    11.WGZ35/3.82-27型燃油锅炉改燃煤循环流化床锅炉设计研发,2002.5-2004.12,40万
    12.SHFX20-1.25-LII型锅炉综合治理技术开发,1999.12-2002.4,96万

代表性论文与专利

    1.Haodong Fan, Shihong Zhang*,et. Study on the Co-combustion characteristics and synergistic effect of semi-coke and dust coal produced from biomass briquette in fluidized bed gasification,2024, Journal of the Energy Institute.
    2.W. Liao, X. Zhang, S. Ke, J. Shao, H. Yang, S. Zhang, H. Chen. The influence of biomass species and pyrolysis temperature on carbon-retention ability and heavy metal adsorption property during biochar aging, Fuel Processing Technology, 240 (2023) 107580.
    3.W. Liao, X. Zhang, H. Ke, S. Zhang, J. Shao, H. Yang, X. Wang, H. Chen. The techno-economic-environmental analysis of a pilot-scale positive pressure biomass gasification coupled with coal-fired power generation system, Journal of Cleaner Production, 402 (2023) 136793.
    4.W. Liao, X. Zhang, J. Chen, S. Zhang, J. Shao, Z. Kuo, H. Yang, H. Chen. The reusing of waste bio-oil as additive on enhanced urea-based selective non-catalytic reduction denitrification, Waste Management, 158 (2023) 37-46.
    5.Zhang han, Shao jingai, Zhang shihong, et. Effect of phosphorus-modified biochars on immobilization of Cu (II), Cd (II), and As (V) in paddy soil, Journal of Hazardous Materials, 2020, 390: 0-121349
    6.Zhou xiaoming, Chen zhuoyuan, Zhang Shihong, et. One-pot hydrothermal synthesis of dual metal incorporated CuCe-SAPO-34 zeolite for enhancing ammonia selective catalytic reduction, Journal of Hazardous Materials, 2021, 405: 0-124177
    7.Xinjie Liao, Jingai Shao, Shihong Zhang*, Xiangpeng Li, Effects of CO2 and CO on the reduction of NO over calcined limestone or char in oxy-fuel fluidised bed combustion,2019, IET Renewable Power Generation.
    8.Zhang S#, Yang M, Shao J, et al. The conversion of biomass to light olefins on Fe-modified ZSM-5 catalyst: Effect of pyrolysis parameters. Science of The Total Environment. 2018;628-629: 350-357.
    9.Zhang S#, Zhang H, Cai J, et al. Evaluation and Prediction of Cadmium Removal from Aqueous Solution by Phosphate-Modified Activated Bamboo Biochar[J]. Energy & Fuels, 2017.
    10.Zhang X, Zhang S*, Yang H, et al. Generalized two-dimensional correlation infrared spectroscopy to reveal mechanisms of CO2 capture in nitrogen enriched biochar. Proceedings of the Combustion Institute. 2017;36: 3933-3940.
    11.Yang J, Ma S, Zhao Y, Zhang J, Liu Z, Zhang S, Zhang Y, Liu Y, et al. Mercury emission and speciation in fly ash from a 35 MWth large pilot boiler of oxyfuel combustion with different flue gas recycle. Fuel. 2017;195: 174-181.
    12.Mei Y, Che Q, Yang Q, Draper  Christopher, Yang H, Zhang S, Chen H, et al. Torrefaction of different parts from a corn stalk and its effect on the characterization of products. Industrial Crops and Products. 2016;92: 26-33.
    13.Xiong Zhang, Shihong Zhang*, High temperature ammonia modification of rice husk char to enhance CO2 adsorption: Influence of pre-deashing, RSC Advances, Dec 2015
    14.Xiong Zhang, Shihong Zhang*, Effects of hydrofluoric acid pre-deashing of rice husk on physicochemical properties and CO2 adsorption performance of nitrogen-enriched biochar, Energy, Nov 2015.
    15.Xiangpeng Li, Shihong Zhang*, Evolution of NOx Precursors during Rapid Pyrolysis of Coals in CO2 Atmosphere, Energy & Fuels, Otc 2015
    16.Zhe Fu, Shihong Zhang*, MSW oxy-enriched incineration technology applied in China: Combustion temperature, flue gas loss and economic considerations, Waste Management, Feb 2015
    17. Mei Y, Liu R, Yang Q, Yang, H, Shao J, Draper Christopher, Zhang S, Chen H, et al. Torrefaction of cedarwood in a pilot scale rotary kiln and the influence of industrial flue gas. Bioresource Technology. 2015;177: 355-360.
    18.Gao Y, Yu B, Wang X, Yuan Q, Yang H, Chen H, Zhang Shihong, et al. Orthogonal test design to optimize products and to characterize heavy oil via biomass hydrothermal treatment. Energy. 2015;88: 139-148.
    19.Xiong Zhang, Shihong Zhang*, Nitrogen enriched biochar modified by high temperature CO2–ammonia treatment: Characterization and adsorption of CO2, The Chemical Engineering Journal, Dec 2014
    20.Shenglei Du, Shihong Zhang, Effect of oxygen and steam on gasification of palm oil wastes, Waste and Resource Management, Feb 2014
    21.Zixu Yang, Shihong Zhang*, Combustion behaviors of tobacco stem in a thermogravimetric analyzer and a pilot-scale fluidized bed reactor, Bioresource Technology, Jan 2012
    22.Wang X, Chen H, Yang H, Ju F, Zhang S. Influence of pyrolysis condition and coal type on char gasification reactivity. Asia-Pacific Journal of Chemical Engineering. 2012;7: S171-S176.
    23.Chen Y, Yang H, Wang X, Zhang S, Chen H. Biomass-based pyrolytic polygeneration system on cotton stalk pyrolysis: Influence of temperature. Bioresource Technology. 2012;107: 411-418.
    24.Ju F, Chen H, Yang H, Wang X, Zhang S, Liu D. Experimental study of a commercial circulated fluidized bed coal gasifier. Fuel Processing Technology. 2010;91: 818-822.
    25.Shi-hong Zhang*, Lu-ning Tian, Xian-rong Zhou, Han-ping Chen, Hai-ping Yang, Xian-hua Wang .Experimental study on ash-returned reactor of CFB atmospheric air gasifier. Proceedings of the 20th International Conference on Fluidized Bed Combustion.2009.653-659.
    26.Shi-hong Zhang*, Hai-hua Luo, Han-ping Chen, Hai-ping Yang, Xian-hua Wang. Reburning characteristics of residual carbon in fly ash from CFB boilers. Proceedings of the 20th International Conference on Fluidized Bed Combustion.2009.1067-1072.
    27.Chen H, Li B, Yang H, Yang G, Zhang S. Experimental investigation of biomass gasification in a fluidized bed reactor. Energy & Fuels. 2008;22: 3493-3498.
    28.Chen H, Yang H, Ju F, Wang J, Zhang S. The influence of pressure and temperature on coal pyrolysis/gasification. Asia-Pacific Journal of Chemical Engineering. 2007;2: 203-212.
    29.Shihong Zhang*, Dechang Liu,Research on the Properties of A Novel Granular Filter in Fluidized‐Bed, Asia-Pacific Journal of Chemical Engineering,v.7,No.3/4,1999:375-386

所获荣誉和奖励

    1.生物质全组分热分解机理与产物高值化调控方法(第5),湖北省自然科学一等奖,2020
    2.高效低耗流化床燃煤工业设备关键技术及应用(第2),国家科技进步二等奖,2013
    3.循环床下排气旋风分离技术及其应用(第2),教育部科学进步一等奖,2005
    4.流化床燃烧的气动力、传热和N2O生成机理研究(第4),教育部科学进步一等奖(基础理论类),1999
    5.新型流化床颗粒层过滤器的研究,湖北省优秀博士论文奖,2003