基本情况

苏亚欣,博士,东华大学教授、博士生导师。获上海市自然科学三等奖(2016)、上海市高校优秀青年教师(2008)、东华大学优秀育人奖(2021)、东华大学优秀党务工作者(2021)。4次获东华大学“我心目中的好老师”、师德建设青年标兵、学生工作先进个人、大学生暑期社会实践优秀指导教师、多媒体教学优秀奖等荣誉称号。获国家级一流本科课程1门(2025年)、教育部“拓金计划”示范课程1门(2023年)、上海市一流本科课程1门(2021年)、上海市高校重点本科课程建设1项(2020)。入选斯坦福大学全球前2%顶尖科学家榜单2021年度、2022年度榜单及终身成就榜单。

 

研究方向

主要从事工程热物理、能源清洁高效利用等领域的研究工作,研究方向包括:

  1. 先进燃烧技术及燃烧污染生成与控制理论
  2. 工业锅炉及工业窑炉的烟气脱硫脱硝技术
  3. 固体废弃物能源资源化利用
  4. 建筑节能及新能源与建筑一体化研究与应用
  5. 气固两相流动与分离
  6. 流动、传热与燃烧的模型与模拟

 

教育背景

1990.9-1994.7, 中国地质大学(武汉)/探矿工程系,本科

1994.9-1997.7,华侨大学/机电工程系,硕士(传热学研究方向)

1997.9-2000.6,浙江大学/热能工程研究所,博士(燃烧学研究方向,导师岑可法院士)

 

工作经历

20007月——20018月,中科院工程热物理研究所,助理研究员,从事空间太阳能热动力发电技术研究,先进燃烧技术(循环流化床锅炉)研究与开发

20019月—今,东华大学环境科学与工程学院,建筑环境与设备工程系,讲师、副教授、教授

20068-20078月,美国The University of Mississippi,访问学者,从事再燃脱硝的研究

2020.3——今, 东华大学环境科学与工程学院,建筑环境与能源工程系系主任

 

专著

  1. 杨翔翔,苏亚欣。延伸表面传热研究。广州:暨南大学出版社,1997.2ISBN7-81029-595-0
  2. 苏亚欣,毛玉如,徐璋。燃煤氮氧化物排放控制技术。北京:化学工业出版社,2005.4ISBN 7-5025-6640-6
  3. 苏亚欣,毛玉如,赵敬德。新能源与可再生能源概论。北京:化学工业出版社,2006 .3ISBN 7-5025-8293-2

 

教材

  1. 龙天渝,苏亚欣,向文英,何川。计算流体力学。重庆:重庆大学出版社,2007.3ISBN 7-5025-8293-2
  2. 苏亚欣主编,传热学。武汉:华中科技大学出版社,2009.12ISBN 978-7-5609-5703-6
  3. 赵兵涛主编(苏亚欣参编)。大气污染控制工程。北京:化学工业出版社,2017.9. 高等教育“十三五”规划教材,获2020年度中国电力工业教育协会能源动力类专业本科精品教材。ISBN:978-7-122-30421-6
  4. 赵兵涛,苏亚欣。新能源与可再生能源工程。北京:化学工业出版社,2022.10ISBN 978-7-122-42053-4
  5. 苏亚欣主编。传热学。北京:机械工业出版社,2023.4,一流本科专业一流本科课程建设系列教材,ISBN 978-7-111-72601-2
  6. 邓文义,田凤国,苏亚欣。燃料热化学转换原理及应用。北京:化学工业出版社,2023.7ISBN 978-7-122-43102-8
  7. 赵兵涛,苏亚欣。大气污染控制理论与技术。北京:化学工业出版社,2024.11ISBN 978-7-122-45150-7

 

Book Chapter

Yaxin Su, Bingtao Zhao. Chapter 4, High-temperature air flameless combustion.         pp81-117, In: Fundamentals of Low Emission Flameless Combustion and Its Applications, edited by Seyed Ehsan Hosseini, Elsevier Academic Press, 2022, ISBN 978-0-323-85244-9

 

代表性论文(20篇)

  1. Sameer Shahid, Yaxin Su*, Jacob Senior Atta Owusu, M Waqar Talib, Huqin Zheng, Wenyi Deng, Bingtao Zhao, Jarosław Zuwała. Transition metal (MnCoCuFeCe) based high-entropy oxides catalysts derived from LDH for promoting low-temperature C3H6-SCR reactivity. Fuel, 2026, 411: 138045, https://doi.org/10.1016/j.fuel.2025.138045
  2. Mingyu Su, Yaxin Su*, Yuhao Wang, Min Cui, Huqin Zheng, Sameer Shahid, Jacob Senior Atta Owusu, Wenyi Deng, Bingtao Zhao, Jarosław Zuwała. High-entropy metal-organic framework (HE-MOF): a “catalytic engine” that ignites the HC-SCR reaction. ACS Catalysis, 2025, 15: 18493−18510, https://doi.org/10.1021/acscatal.5c05308
  3. Shuying Ning, Nini Wen, Bingtao Zhao, Muhammad Kashif, Philippe M. Heynderickx, Yaxin Su*. Trimetallic FeNiCu atomic clusters supported on carbon matrix: highly active catalysts for C3H6-SCR of NO. ACS Applied Materials and Interface, 2024, 16 (47):64664-64680, https://doi.org/10.1021/acsami.4c11698
  4. Jiawei Huang, Shuying Ning, Zhufeng Wang, Bingbing Luo, Wenyi Deng, Bingtao Zhao, Yaxin Su*. Copper-based Catalysts Supported on Novel Metal-Organic Framework MIL-125(Ti) for Selective Catalytic Reduction of NO with CO. Fuel, 2024, 364: 131167, https://doi.org/10.1016/j.fuel.2024.131167
  5. Quan Liu, Muhammad Kashif, Wenyi Deng, Bingtao Zhao, Philippe M. Heynderickx, Yaxin Su*. Exploring the role of Cu/Mn-BTC catalyst in the selective catalytic reduction of NOx by C3H6: synthesis to in-situ DRIFTS study. Fuel, 2024, 367: 131508, https://doi.org/10.1016/j.fuel.2024.131508
  6. Jiayin Chen, Wei Fu, Chen Cai, Shuying Ning, Muhammad Kashif, Wenyi Deng, Bingtao Zhao, Yaxin Su*. Activity of CuCoCe Layered Double Hydroxides catalysts and mechanism for C3H6-SCR. Fuel, 2024, 369:131789, https://doi.org/10.1016/j.fuel.2024.131789
  7. Shuying Ning, Yaxin Su*, Wenyi Deng, Bingtao Zhao. Fe-Ni bimetallic atomic catalysts supported on ZIF-8 derived carbon for C3H6-SCR of NO: catalytic performance and reaction mechanism. Separation and Purification Technology, 2024, 335: 126207, https://doi.org/10.1016/j.seppur.2023.126207
  8. Shuying Ning, Yaxin Su*, Honghai Yang, Bingtao Zhao. Ni-modified MIL-100(Fe) catalysts for CO-SCR and reaction mechanism. Fuel, 2024, 359: 130452, https://doi.org/10.1016/j.fuel.2023.130452
  9. Chen Cai, Jiayin Chen, Wei Fu, Shuying Ning, Hao Zhou, Muhammad Kashif, Yaxin Su*. Study on SCR-CO performance of Ce modified OMS-2 catalysts. Journal of Environmental Chemical Engineering, 202311: 111589, https://doi.org/10.1016/j.jece.2023.111589
  10. Zhufeng Wang, Jiawei Huang, Bingbing Luo, Shuying Ning, Wenyi Deng, Bingtao Zhao, Songmei Sun, Yaxin Su*. Selective catalytic reduction of NO by CO over MOF-based CuOx@ZIF-67 catalysts and reaction mechanism. Fuel, 2023, 348: 128565, https://doi.org/10.1016/j.fuel.2023.128565
  11. Nini WenYaxin Su*Wenyi DengHao ZhouMingtao Hu, Bingtao Zhao. Synergy of CuNiFe-LDH based catalysts for enhancing low-temperature SCR-C3H6 performance: surface properties and reaction mechanism. Chemical Engineering Journal, 2022438:135570, https://doi.org/10.1016/j.cej.2022.135570
  12. Nini Wen, Yaxin Su*, Wenyi Deng, Hao Zhou, Bingtao Zhao. Selective catalytic reduction of NO with C3H6 over CuFe-containing catalysts derived from layered double hydroxides. Fuel, 2021, 283119296,  https://doi.org/10.1016/j.fuel.2020.119296
  13. Yaxin Su*, Nini Wen, Jianghao Cheng, Wenyi Deng, Hao Zhou, Bingtao Zhao. Experimental study on the SCR-C3H6 over Cu-Fe/Al-PILC catalysts: Catalytic performance, characterization and the mechanism. Industrial & Engineering Chemistry Research, 2020, 59(33):14776-14788, https://dx.doi.org/10.1021/acs.iecr.0c02798
  14. Jin Sun, Bingtao Zhao*, Yaxin Su*. Advanced control of NO emission from algal biomass combustion using loaded iron-based additives. Energy, 2019,185:229-238, https://doi.org/10.1016/j.energy.2019.07.042
  15. Minhao Yuan, Yaxin Su*, Wenyi Deng, Hao Zhou. Porous clay heterostructures (PCHs) modified with copper ferrite spinel as catalyst for SCR of NO with C3H6. Chemical Engineering Journal, 2019, 375:1222091, https://doi.org/ 10.1016/j.cej.2019.122091
  16. Minhao Yuan, Wenyi Deng, Shilin Dong, Qiancheng Li, Bingtao Zhao, Yaxin Su*. Montmorillonite based porous clay heterostructures modified with Fe as catalysts for selective catalytic reduction of NO with propylene. Chemical Engineering Journal, 2018, 353: 839-848, https://doi.org/10.1016/j.cej.2018.07.201
  17. Hao Zhou *, MengYao Ge, Shiguo Wu, Bichao Ye, Yaxin Su*. Iron based monolithic catalysts supported on Al2O3, SiO2, and TiO2: A comparison for NO reduction with propane. Fuel, 2018, 220: 330-338, https://doi.org/10.1016/j.fuel. 2018.01.077
  18. Hao Zhou, Kangkai Li, Bingtao Zhao, Wenyi Deng, Yaxin Su*, Fangchuan Zhong. Surface properties and reactivity of Fe/Al2O3/cordierite catalysts for NO reduction by C2H6: effects of calcination temperature. Chemical Engineering Journal, 2017, 326: 737-744, https://doi.org/10.1016/j.cej.2017.06.018
  19. Bingtao Zhao, Yaxin Su, Guomin Cui. Post-combustion CO2 capture with ammonia by vortex flow-based multistage spraying: process intensification and performance characteristics. Energy, 2016, 102: 106-117, http://dx.doi.org/10.1016/j.energy.2016.02.056
  20. Hao Zhou, Yaxin Su*, Wenyu Liao, Wenyi Deng, Fangchuan Zhong. NO reduction by propane over monolithic cordierite-based Fe/Al2O3 catalyst: reaction mechanism and effect of H2O and SO2. Fuel, 2016, 182352-360,  http://dx.doi.org/10.1016/j.fuel.2016.05.116
  21. Yaxin Su, Bingtao Zhao, Wenyi Deng. NO reduction by methane over iron oxides: characteristics and mechanisms. Fuel, 2015, 160: 80-86 , http://dx.doi.org/10.1016/j.fuel.2015.07.077

科技奖

旋流气体颗粒多相强化分离动力学理论与过程模拟方法,上海市人民政府,上海市自然科学奖三等奖(证书号:20162018-3-R03),2016.11.25