武汉大学资源与环境科学学院博士生导师简介:汪的华

2016-12-02 16:54:34来源:网络

  2.Huayi Yin, Beihu Lu, Yin Xu, Diyong Tang, Xuhui Mao, Wei Xiao, Dihua Wang, Harvesting Capacitive Carbon by Carbonization of Waste Biomass in Molten Salts, Environ. Sci. Technol., 2014, 48 (14), pp 8101–8108

  3.Huayi Yin,Xuhui Mao,Diyong Tang,Wei Xiao,Luru Xing,Hua Zhu, Dihua Wang* and Donald R. Sadoway, Capture and electrochemical conversion of CO2 to value-added carbon and oxygen by molten salt electrolysis, Energy Environ. Sci., 2013, 6:1538-1545

  4.Huayi Yin, Wei Xiao, Xuhui Mao, Weifeng Wei, Hua Zhu, Dihua Wang*,Template-free electrosynthesis of crystalline germanium nanowires from solid germanium oxide in molten CaCl2–NaCl, Electrochimica Acta,(2013),102:369-374

  5.W. Xiao, X. Wang, H.Y. Yin, H. Zhu, X.H. Mao, D.H. Wang*, Verification of Dissolution- Electrodeposition Process during Electro-reduction of Solid Silica in Molten CaCl2: Implications on electrolytic Silicon Nanowires Formation and Electrodeposited Silicon Extraction, RSC Advances,2(2012) 7588–7593

  6.Yin, H.Y., Tang, D.Y., Zhu, H., Zhang, Y., Wang, D.H*, Production of iron and oxygen in molten K2CO3–Na2CO3 by electrochemically splitting Fe2O3 using a cost affordable inert anode, Electrochemistry Communications, 13 (2011) 1521–1524

  7.Wang, D. H., Gmitter, A.J., Sadoway, D.R*, Production of oxygen gas and liquid metal by electrochemical decomposition of molten iron oxide, Journal of The Electrochemical Society, 158(6), pp E51-E54 (2011)

  8.Yin, Huayi, Gao, Lili, Zhu, Hua, Mao, Xuhui, Gan, Fuxing, Wang Dihua*, On the development of metallic inert anode for molten CaCl2-CaO System, Electrochimica Acta, 56 (2011):3296-3302

  9.Zhu, H., Gao, L., Li, M., Yin, H., Wang, D*, Fabrication of free-standing conductive polymer films through dynamic three-phase interline electropolymerization, Electrochemistry Communications, 13 (2011) 1479-1483

  10.Dihua Wang, Guohong Qiu, Xianbo Jin, George Z. Chen*,Electrochemical metallisation of solid terbium oxides, Angew. Chem. Int. Ed., 2006, 45,2384.

  Highlighted by “Chemistry World” http://www.rsc.org/chemistryworld/News/2006/March/13030601.asp

  11.Yong Zhu Dihua Wang*, Meng Ma, et al., More affordable electrolytic LaNi5-Type hydrogen storage powders, Chem. Comm. (2007) 14: 2515.

  Highlighted by “Chemistry Technology.”

  http://www.rsc.org/Publishing/ChemTech/Volume/2007/05/plug_in_engines.asp

  12.肖巍,朱华,尹华意,汪的华*,熔盐电化学低碳冶金新技术研究,电化学,2012,18(3):193-200 (邀请综述/Invited review)

  Book chapters (书籍章节):

  1.Wang DH, Xiao W. Chapter 9 – Inert Anode Development for High-Temperature Molten Salts,in "Molten Salts Chemistry:From Lab to Applications",Edited by Frederic Lantelme and Henri Groult, Elsevier, 2013,Pages 171-186.ISBN: 978-0-12-398538-5

  2.刘敏,汪的华,朱华,林安,甘复兴.绿色表面工程技术发展研究.p106-110.in:中国腐蚀与防护学会编著:2011-2012材料腐蚀学科发展报告.北京:中国科学技术出版社, 2012年 ISBN 978-7-5046-6033-6

  3.Diyong Tang, Huayi Yin, Wei Xiao, Xuhui Mao and Dihua Wang,Chapter 11. CO2 Emission Reduction Through Innovative Molten Salt Electrolysis Technologies Using Inert Anodes, in Energy Technology 2014: Carbon Dioxide Management and Other Technologies, Edited by Cong Wang, Jan de Bakker, Cynthia K. Belt, Animesh Jha, Neale R. Neelameggham, Soobhankar Pati, Leon H. Prentice, Gabriella Tranell andKyle S. Brinkman, Willy, 2014, ISBN: 9781118888209

  Invited conference talks (学术会议大会/主题/邀请报告):

  1."Novel Molten Carbonate Electrolysis Technologies for a Low Carbon Future",Reactive Metal Workshop 10 (RMW10), Cambridge, MA, USA,Mar.20-21,2015 (invited)

  2."Electrochemical Preparation of Nano-materials in High Temperature Molten Salts",TMS 144th Annual Meeting and Exhibition, Orlando, FL, USA, Mar.15-19,2015 (invited)

  3."From Waste to Energy Storage Materials through High Temperature Molten Salt Technologies", Energy Technology and Carbon Dioxide Management Symposium 2015, TMS 144th Annual Meeting and Exhibition, Orlando, FL, USA, Mar.15-19,2015 (invited)

  4."High Temperature Electrochemical Pathways Towards Low-Carbon Steelmaking and Efficient CO2 Utilization",ECEE2014, Electrochemistry Conference on Energy and the Environment, Shanghai, Mar.13-16, 2014 (keynote)

  5.“从废气到高性能碳材料——CO2熔盐电化学捕集与资源化利用”,第17次全国电化学大会,主题报告,2013年11月,苏州

  6.“高温熔盐中金属材料的电化学行为”,第7次全国腐蚀大会,邀请报告,2013年7月,长垣

  7.“Various reactions during electro-reduction of solid compounds in high temperature molten salts”, 2013 TMS annual meeting, Plenary Session of High Temperature Electrochemistry, 2013.3,San Antonio, USA

  8.“氧化物熔盐电解新技术”,2012年熔盐化学与乏燃料干法后处理方法学术研讨会,大会报告,2012年6月,北京

  9.“高温熔盐中金属的腐蚀与防护——腐蚀电化学的机遇与挑战”,2012年全国腐蚀电化学及测试方法学术交流会,邀请报告,2012年8月,成都

  10.“熔盐的净化和处理技术”,熔盐化学技术与先进核能学术交流会,特邀报告,2011年11月,上海

  11.“熔盐电化学低碳冶金新技术”,第十六次全国电化学大会,主题报告,2011年10月,重庆

  12.“High temperature electrochemical pathways for green iron”, 2011 ISE annual meeting, Invited, 2011.9,Niigata, Japan

  13. “绿色表面保护技术创新研究”,第16届全国表面保护技术交流会,特邀报告,2011年5月,武汉

  14."On the Development of Metallic Inert Anode for Molten Salt", The 3rd Asia Conference on Molten Salts and Ionic Liquids, Keynote, 2011.1, 哈尔滨

  Issued patents (授权专利)

  1. CN102230194B 一种由钨酸钙制备纳米钨粉的方法

  2. CN101979715B 硅钙合金的制备方法

  3. CN102020845B 一种导电聚苯胺聚吡咯复合膜的制备方法

  4. CN101979438B 一种导电聚吡咯的制备方法

  5. CN102020832B 一种导电聚3,4-乙烯二氧噻吩膜及制备方法

  6. CN102071433B 导电聚合物的界面聚合法

  7. CN101386711B 固液复合材料及其制备方法和用途

  8. CN100551589C 超细钽粉的电化学制备方法

  9. CN1837411B 一种难熔活泼金属或合金的制备方法

  10.CN100570011C 一种由复合化合物制备金属材料的方法

  11.CN1201418C 铅酸电池负极的制备方法

  12.CN103130691B 一种铬雾抑制剂及其制备方法

  13.CN102432828B 一种改性丙烯酸聚合物及其制备方法

  14.CN2685874Y 高温全密封式参比电极

  15.CN203080101U 一种铬雾收集装置

  奖励与荣誉

  入选国家科技部中青年科技创新领军人才支持计划(2015)

  获国家杰出青年科学基金资助(2013)

  湖北省楚天学者特聘教授(2009)

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