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苏华能
发布日期:2020-05-22   浏览次数:

苏华能 研究员,硕士生导师

邮箱suhuaneng@ujs.edu.cn

地址:江苏大学 能源研究院

个人履历:1979年生,湖南浏阳人,工学博士。2002 年和2005 年毕业于兰州大学化学化工学院,分别获学士和硕士学位。2005-2007于海南省琼州学院任教。2007-2010 年于华南理工大学应用化学专业学习,从事质子交换膜燃料电池膜电极方面的开发和应用研究,获博士学位;2011-2012 年于西开普大学-南非先进材料化学研究所(SAIAMC)从事博士后研究工作,主要从事固体电解质水电解制氢及高温燃料电池方面的研究;随后留所工作,任研究员(Senior Researcher),参与南非氢能项目(HySA,国家级15 年长期战略项目),担任研发组长(Head of R&D Group),负责高温膜燃料电池电极的研究开发及其在热电联供系统(CHP)中的应用研究。目前已在该研究方向发表SCI论文60余篇,总共被引用1200余次。在燃料电池系统和电极开发方面授权国内外专利6 项。主持国家重点研发计划、国家自然科学基金等各类项目8项。参与编著4部,获“广东省优秀博士学位论文”等奖项。

研究方向

新能源技术:氢能和燃料电池能源动力系统的技术开发

燃料电池:低温和高温膜燃料电池电极/膜电极/电极材料的开发和应用

SPE水电解:固体聚合物膜(SPE)水电解系统电极的制备应用

主要承担项目

2020-2022,基于催化层全有序结构聚电解质膜燃料电池高性能超低铂载量膜电极研究开发,国家重点研发计划“政府间国际科技创新合作”重点专项(2018YFE0121200),主持

2017-2020,免微孔层气体扩散电极的构建及其在高温膜燃料电池中的应用研究,国家自然科学基金面上项目(21676126),主持

2017-2020,高温膜燃料电池高效双层结构电极的理性构建及相关基础问题研究, 江苏省自然科学基金面上项目(SBK2017020174),主持

2018-2021,氢-空燃料电池动力系统关键技术-高性能低成本膜电极研发与应用,镇江市重点研发计划-产业前瞻与共性关键技术前期引导项目(GY2018024),主持

2017-2020,江苏大学-江苏乾景新能源产业技术研究院产学研合作协议,横向科研,主持

2011-2012,MEAs for SPE water electrolysis,南非科学研究基金会(NRF)(76466),主持

2013-2015,新型免增湿膜电极的制备及其免增湿机理研究,广东省教育厅(x2hg-K3130020),主持

学术及科研成果

论文

[1] Huaneng Su, Qian Xu*, Junjie Chong, Huaming Li, Cordellia Sita, Sivakumar Pasupathi. Eliminating micro-porous layer from gas diffusion electrode for use in high temperature polymer electrolyte membrane fuel cell. Journal of Power Sources 2017;341:302-308.

[2] Huaneng Su*, Cordellia Sita, Sivakumar Pasupathi. The Effect of Gas Diffusion Layer PTFE Content on The Performance of High Temperature Proton Exchange Membrane Fuel Cell. International Journal of Electrochemical Science 2016;11(4):2919-2926.

[3] Huagen Liang, Huaneng Su*, Bruno G. Pollet, Sivakumar Pasupathi. Development of membrane electrode assembly for high temperature proton exchange membrane fuel cell by catalyst coating membrane method. Journal of Power Sources 2015;288:121-127.

[4] Olivia Barron, Huaneng Su*, Vladimir Linkov, Bruno G. Pollet, Sivakumar Pasupathi. Enhanced performance and stability of high temperature proton exchange membrane fuel cell by incorporating zirconium hydrogen phosphate in catalyst layer. Journal of Power Sources 2015;278:718-724.

[5] Olivia Barron, Huaneng Su*, Vladimir Linkov, BrunoG Pollet, Sivakumar Pasupathi. CsHSO4 as proton conductor for high-temperature polymer electrolyte membrane fuel cells. Journal of Applied Electrochemistry 2014;44(9):1037-1045.

[6] Odne S. Burheim, Huaneng Su*, Hans Henrik Hauge, Sivakumar Pasupathi, Bruno G. Pollet. Study of thermal conductivity of PEM fuel cell catalyst layers. International Journal of Hydrogen Energy 2014;39(17):9397-9408.

[7] Huagen Liang, Huaneng Su*, Bruno G. Pollet, Vladimir Linkov, Sivakumar Pasupathi. Membrane electrode assembly with enhanced platinum utilization for high temperature proton exchange membrane fuel cell prepared by catalyst coating membrane method. Journal of Power Sources 2014;266:107-113.

[8] Huaneng Su*, Cordellia Sita, Sivakumar Pasupathi. The Effect of Gas Diffusion Layer PTFE Content on The Performance of High Temperature Proton Exchange Membrane Fuel Cell. International Journal of Electrochemical Science 2016;11(4):2919-2926.

[9] Huaneng Su, Ting-Chu Jao*, Olivia Barron, Bruno G. Pollet, Sivakumar Pasupathi. Low platinum loading for high temperature proton exchange membrane fuel cell developed by ultrasonic spray coating technique. Journal of Power Sources 2014;267:155-159.

[10] Huaneng Su*, Cecil Felix, Olivia Barron, Piotr Bujlo, BernardJ Bladergroen, BrunoG Pollet, Sivakumar Pasupathi. High-Performance and Durable Membrane Electrode Assemblies for High-Temperature Polymer Electrolyte Membrane Fuel Cells. Electrocatalysis 2014;5(4):361-371.

[11] Huaneng Su, Huagen Liang*, Bernard J. Bladergroen, Vladimir Linkov, Bruno G. Pollet, Sivakumar Pasupathi*. Effect of Platinum Distribution in Dual Catalyst Layer Structured Gas Diffusion Electrode on the Performance of High Temperature PEMFC. Journal of the Electrochemical Society 2014;161(4):F506-F512.

[12] Huaneng Su, Ting-Chu Jao*, Sivakumar Pasupathi, Bernard Jan Bladergroen, Vladimir Linkov, Bruno G. Pollet. A novel dual catalyst layer structured gas diffusion electrode for enhanced performance of high temperature proton exchange membrane fuel cell. Journal of Power Sources 2014;246:63-67.

[13] Huaneng Su*, Sivakumar Pasupathi, Bernard Jan Bladergroen, Vladimir Linkov, Bruno G. Pollet. Enhanced performance of polybenzimidazole-based high temperature proton exchange membrane fuel cell with gas diffusion electrodes prepared by automatic catalyst spraying under irradiation technique. Journal of Power Sources 2013;242:510-519.

[14] Huaneng Su*, Sivakumar Pasupathi, Bernard Bladergroen, Vladimir Linkov, Bruno G. Pollet. Optimization of gas diffusion electrode for polybenzimidazole-based high temperature proton exchange membrane fuel cell: Evaluation of polymer binders in catalyst layer. International Journal of Hydrogen Energy 2013;38(26):11370-11378.

[15] Huaneng Su*, Sivakumar Pasupathi, Bernard Bladergroen, Vladimir Linkov, Bruno G. Pollet. Performance Investigation of Membrane Electrode Assemblies for High Temperature Proton Exchange Membrane Fuel Cell. Journal of Power and Energy Engineering 2013;1(5):95-100.

[16] Huaneng Su*, Vladimir Linkov, Bernard Jan Bladergroen. Membrane electrode assemblies with low noble metal loadings for hydrogen production from solid polymer electrolyte water electrolysis. International Journal of Hydrogen Energy 2013;38(23):9601-9608.

[17] Huaneng Su, Bernard Jan Bladergroen, Sivakumar Pasupathi, Vladimir Linkov, Shan Ji*. Performance Investigation of Membrane Electrode Assemblies for Hydrogen Production by Solid Polymer Electrolyte Water Electrolysis. International Journal of Electrochemical Science 2012;7(5):4223-4234.

[18] Huaneng Su, Bernard Jan Bladergroen, Vladimir Linkov, Sivakumar Pasupathi, Shan Ji*. Study of catalyst sprayed membrane under irradiation method to prepare high performance membrane electrode assemblies for solid polymer electrolyte water electrolysis. International Journal of Hydrogen Energy 2011;36(23):15081-15088.

[19] Hua-Neng Su, Li-Jun Yang, Shi-Jun Liao*, Qiao Zeng. Membrane electrode assembly with Pt/SiO2/C anode catalyst for proton exchange membrane fuel cell operation under low humidity conditions. Electrochimica Acta 2010;55(28):8894-8900.

[20] Huaneng Su, Qiao Zeng, Shijun Liao*, Yanni Wu. High performance membrane electrode assembly with ultra-low platinum loading prepared by a novel multi catalyst layer technique. International Journal of Hydrogen Energy 2010;35(19):10430-10436.

[21] Huaneng Su, Leimin Xu, Huaping Zhu, Yanni Wu, Lijun Yang, Shijun Liao*, Huiyu Song, Zhenxing Liang, Viola Birss. Self-humidification of a PEM fuel cell using a novel Pt/SiO2/C anode catalyst. International Journal of Hydrogen Energy 2010;35(15):7874-7880.

[22] Huaneng Su, Shijun Liao*, Yanni Wu. Significant improvement in cathode performance for proton exchange membrane fuel cell by a novel double catalyst layer design. Journal of Power Sources 2010;195(11):3477-3480.

[23] Huaneng Su, Shijun Liao*, Ting Shu, Haili Gao. Performance of an ultra-low platinum loading membrane electrode assembly prepared by a novel catalyst-sprayed membrane technique. Journal of Power Sources 2010;195(3):756-761.

[24] H. N. Su, S. J. Liao*, L. M. Xu. Design, Fabrication and Preliminary Study of a Mini Power Source with a Planar Six-cell PEM Unitised Regenerative Fuel Cell Stack. Fuel Cells 2009;9(5):522-527

著作或章节:

[1] Bernard Bladergroen, Huaneng Su, Sivakumar Pasupathi, Vladimir Linkov, Overview of Membrane Electrode Assembly Preparation Methods for Solid Polymer Electrolyte Electrolyzer. In Electrolysis, Linkov, V., Ed. InTech: Janeza Trdine 9, 51000 Rijeka, Croatia, 2012; p 45.

[2] Sivakumar Pasupathi, Huaneng Su, Huagen Liang, Bruno G Pollet, Advanced Technologies for Proton-Exchange Membrance Fuel Cells. In Electrochemical Energy: Advanced Materials and Technologies, Shen, P. K.; Wang, C.-Y.; Jiang, S. P.; Sun, X.; Zhang, J., Eds. CRC Press: 2015; pp 405-420.

[3] B.G. Pollet, A.A. Franco, H. Su, Huagen Liang, S. Pasupathi, Proton exchange membrane fuel cells. In Compendium of Hydrogen Energy, 2016

[4] Sivakumar Pasupathi, Juan Carlos Calderon Gomez, Huaneng Su, Harikishan Reddy, Piotr Bujlo, Cordellia Sita. Recent Advances in High-Temperature PEM Fuel Cells. 1st ed.; Elsevier: 2016; p 86.

专利

[1] 苏华能,姚东梅,张玮琦等,一种催化层全有序燃料电池电极和膜电极,授权专利号:ZL201810279389.6

[2] 苏华能,张玮琦,马强等, 一种组合再生式燃料电池系统放电工作模式启动方法,授权专利号:ZL201810022421.2
[3] 田立亮,苏华能,朱新坚等, 一种能够改善质子交换膜燃料电池低湿度运行性能的膜电极制备方法,授权专利号:ZL201910585539.0

[4] 姚东梅,苏华能,张玮琦等, 一种催化层全有序结构燃料电池电极和膜电极的制备方法,授权专利号:ZL201810296464.X

[5] 姚东梅,苏华能,朱新坚等,一种固体电解质水电解膜电极及其制备方法,授权专利号:ZL201910596174.1

[6] 苏华能,廖世军,一种微型组合再生式燃料电池电源系统,授权专利号:ZL200810029725.8

[7] Huaneng Su, Olivia Barron, Vladimir Linkov, Bruno G. Pollet, Sivakumar Pasupathi, Gas diffusion electrodes, RSA patent: ZA2015/03015

荣誉及获奖

2011年,广东省优秀博士学位论文

2011年,华南理工大学优秀博士学位论文

2011年,南非NRF“Innovation Postdoctoral Fellowship”

2012年,肇庆市科学技术二等奖,第4

2010年,美国智库Frost & Sullivan公司“Highlight”文章

2009年,全国博士生学术会议(应用化学)“优秀论文”奖

 
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