(1)Z.K. Tu, H. N. Zhang*, Z.P. Luo, J. Liu, Z.M. Wan, M. Pan, Evaluation of 5kW Proton Exchange Membrane Fuel Cell Stack Operated at 95oC under Ambient Pressure, Journal of Power Sources, 222, 277-281, 2013
(2)Y. Yu, Z.K. Tu*, Z.G. Zhan, M. Pan, Gravity effect on the performance of PEM Fuel Cell Stack with different gas inlet/outlet positions, International Journal of Energy Research, 36, 845-855, 2012
(3)Z.M. Wan, J.H. Wan, J. Liu, Z.K. Tu*, M. Pan, Z.C. Liu, W. Liu, Water recovery and air humidification by condensing the moisture in the outlet gas of a proton exchange membrane fuel cell stack, Applied Thermal Engineering, 42,173-178, 2012
(4)H.C. Pei, Z.C. Liu, H.N. Zhang, Y. Yu, Z.K. Tu*, Z.M. Wan, W. Liu*, In Situ Measurement of Temperature Distribution in Proton Exchange Membrane Fuel Cell Ⅰ A Hydrogen-Air Stack, Journal of Power Sources, 227, 72-79, 2013
(5)Z.M. Wan, J. Liu, Z.P. Luo, Z.K. Tu*, Z.C. Liu, W. Liu, Evaluation of self-water-removal in a dead-ended proton exchange membrane fuel cell, Applied Energy, 104, 751-757, 2013
(6)C.X. Huang, Z.K. Tu*, X.T. Shen, Molecularly imprinted photocatalyst with a structural analogue of template and its application, Journal of Hazardous Materials, 248-249,379-386,2013
(7)D.H. Ye, Z.K. Tu*, Y. Yu, H.N. Zhang, Z.G. Zhan, M. Pan. Hydrogen Permeation across Super-thin Membrane and the Burning Limitation in Low-temperature Proton Exchange Membrane Fuel Cell. International Journal of Energy Research, 2014,38:1181-1191
(8)Z.M. Wan, J. Shen, H.N. Zhang, Z.K Tu*, W. Liu. In Situ Temperature Measurement in a 5kW-class Proton Exchange Membrane Fuel Cell Stack with Pure Oxygen as the Oxidant, International Journal of Heat and Mass Transfer. 2014, 75:231-234
(9)Z.K. Tu, H.L. Tang*, X.T. Shen. Particle-Assisted Semidirect Breath Figure Method: A Facile Way to Endow the Honeycomb-Structured Petri Dish with Molecular Recognition Capability. ACS Applied Materials & Interfaces, 2014, 6:12931-12938
(10)J. Feng, Q.L. Zhang, Z.K. Tu*, W.M. Tu, Z.M. Wan, M. Pan, H.N. Zhang*. Degradation of silicone rubbers with different hardness in various aqueous solutions. Polymer Degradation and Stability, 2014, 109:122-128
八、聯系方式:
1、Tel:
2、E-mail:tzklq@whut.edu.cn
3、工作地址:材料復合新技術國家重點實驗室601室
1.Name: Zhengkai Tu
2.Brief introduction:
1)Date of birth: 1981.11
2)Degree: Ph. D
3)Title: Associate Professor
4)Working department: State Key Laboratory of Advanced Technology for Materials Synthesis and Processing
09/2000 – 06/2004 B. Sc., School of Environmental Science and Engineering, Huazhong University of Science and Technology, China
09/2004 – 06/2009 Ph. D., School of Energy and Power Engineering, Huazhong University of Science and Technology, China
4.Working experience:
09/2009 – present Working on the proton exchange membrane fuel cells in Fuel Cell Research Group at the State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology.
5.Research field(no more than 3):
PEMFC; Porous Medium; Heat transfer in Electron Device
6.Research project(no more than 5):
(1)General Program of National Natural Science Foundation(51476119): Theoretical and Experimental Investigation in Gravity Assisted Water Removal of Proton Exchange Membrane Fuel Cell in Underwater Vehicle
(2)China Postdoctoral Science Foundation (20100471165): Heat and mass transfer mechanism in PEMFC
(3)Key Program of Self-innovation Foundation of WHUT (2014II010): PEMFC Power Device Used in Undersea Vehicle
(4)Self-innovation Foundation of WHUT (2012IV084): Water management in a dead-ended PEMFC
(5)Program of Enterprise commissioned (20131h0302): Development of a 7kW hydrogen-oxygen PEMFC stack
7.Representative papers and works(no more than 10):
(1)Z.K. Tu, H. N. Zhang*, Z.P. Luo, J. Liu, Z.M. Wan, M. Pan, Evaluation of 5kW Proton Exchange Membrane Fuel Cell Stack Operated at 95oC under Ambient Pressure, Journal of Power Sources, 222, 277-281, 2013
(2)Y. Yu, Z.K. Tu*, Z.G. Zhan, M. Pan, Gravity effect on the performance of PEM Fuel Cell Stack with different gas inlet/outlet positions, International Journal of Energy Research, 36, 845-855, 2012
(3)Z.M. Wan, J.H. Wan, J. Liu, Z.K. Tu*, M. Pan, Z.C. Liu, W. Liu, Water recovery and air humidification by condensing the moisture in the outlet gas of a proton exchange membrane fuel cell stack, Applied Thermal Engineering, 42,173-178, 2012
(4)H.C. Pei, Z.C. Liu, H.N. Zhang, Y. Yu, Z.K. Tu*, Z.M. Wan, W. Liu*, In Situ Measurement of Temperature Distribution in Proton Exchange Membrane Fuel Cell Ⅰ A Hydrogen-Air Stack, Journal of Power Sources, 227, 72-79, 2013
(5)Z.M. Wan, J. Liu, Z.P. Luo, Z.K. Tu*, Z.C. Liu, W. Liu, Evaluation of self-water-removal in a dead-ended proton exchange membrane fuel cell, Applied Energy, 104, 751-757, 2013
(6)C.X. Huang, Z.K. Tu*, X.T. Shen, Molecularly imprinted photocatalyst with a structural analogue of template and its application, Journal of Hazardous Materials, 248-249,379-386,2013
(7)D.H. Ye, Z.K. Tu*, Y. Yu, H.N. Zhang, Z.G. Zhan, M. Pan. Hydrogen Permeation across Super-thin Membrane and the Burning Limitation in Low-temperature Proton Exchange Membrane Fuel Cell. International Journal of Energy Research, 2014,38:1181-1191
(8)Z.M. Wan, J. Shen, H.N. Zhang, Z.K Tu*, W. Liu. In Situ Temperature Measurement in a 5kW-class Proton Exchange Membrane Fuel Cell Stack with Pure Oxygen as the Oxidant, International Journal of Heat and Mass Transfer. 2014, 75:231-234
(9)Z.K. Tu, H.L. Tang*, X.T. Shen. Particle-Assisted Semidirect Breath Figure Method: A Facile Way to Endow the Honeycomb-Structured Petri Dish with Molecular Recognition Capability. ACS Applied Materials & Interfaces, 2014, 6:12931-12938
(10)J. Feng, Q.L. Zhang, Z.K. Tu*, W.M. Tu, Z.M. Wan, M. Pan, H.N. Zhang*. Degradation of silicone rubbers with different hardness in various aqueous solutions. Polymer Degradation and Stability, 2014, 109:122-128
8. Contact information:
1) Tel:
2) E-mail: tzklq@whut.edu.cn
3) Location of lab: No. 601 of State Key Laboratory of Advanced Technology for Materials Synthesis and Processing