Dr. Wei-Hsin  Chen
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Dr. Wei-Hsin Chen

Professor
National Cheng Kung University, China


Highest Degree
Ph.D. in Aeronautics and Astronautics from National Cheng Kung University, Tainan, Taiwan

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Biography

Dr. Wei-Hsin Chen is currently working as Wei-Hsin Chen Professor Department of Aeronautics and Astronautics National Cheng Kung University Tainan, Taiwan. He has completed his Ph.D. in Aeronautics and Astronautics from same University. His main area of research interest focuses on Torrefaction, Gasification, Pyrolysis and Combustion, Pretreatment of lignocelluloses for Bioethanol production, Hydrogen production, (membrane) separation and purification, Clean Coal Technology, Carbon Dioxide capture and utilization, Pulverized coal injection, ironmaking process, Thermoelectric generation and cooling, Waste heat recovery and energy analysis, Waste Incineration, and Air pollution and aerosol absorption. Previously he was appointed as Engineer at An Feng Steel Corporation, Ltd., Taiwan, ROC, Associate Professor at Fooyin University, Kaohsiung, Taiwan, ROC, Visiting Professor at Princeton University, New Jersey, USA, New South Wales, Sydney, Australia, University of Edinburgh, Edinburgh, UK, and University of British Columbia, Vancouver, Canada, and Professor at National University of Tainan, Taiwan, ROC. Dr. Wei-Hsin received honors includes Research Award of National Science Council, Taiwan, Outstanding Research Award, Fooyin University, Best Paper Award of 2005 International Conference on Aerosol Science and Technology, Australian Endeavour Executive Award, Award of the Royal Society of Edinburg, Marquis Whos Who in Science and Engineering, and Marquis Whos Who in the World. He is Editor-in-Chief of Combustion Quarterly, and member of editorial board in journals. He is also acting as reviewer for 54 scientific journals. He is also serving as member of several committees and associations. He is published 7 books and thesis, 135 research articles in journals, 70 international conference papers contributed as author/co-author. He is also author of 13 patents.

Area of Interest:

Physics
100%
Torrefaction
62%
Gasification
90%
Pyrolysis
75%
Combustion
55%

Research Publications in Numbers

Books
0
Chapters
0
Articles
0
Abstracts
0

Selected Publications

  1. Wu, W., M.H. Lin and W.H. Chen, 2015. Exergy analysis of an EFC/PV/battery-based hybrid power generation system. Int. J. Energy Res., 39: 406-417.
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  2. Mwangi, J.K., W.J. Lee, L.M. Whang, T.S. Wu and W.H. Chen et al., 2015. Microalgae oil: Algae cultivation and harvest, algae residue torrefaction and diesel engine emission test. Aerosol Air Qual. Res., 15: 81-98.
  3. Lin, B.J. and W.H. Chen, 2015. Sugarcane bagasse pyrolysis in a carbon dioxide atmosphere with conventional and microwave-assisted heating. Front. Energy Res., Vol. 3. 10.3389/fenrg.2015.00004.
    CrossRef  |  Direct Link  |  
  4. Du, S.W., C.P. Yeh, W.H. Chen, C.H. Tsai and J.A. Lucas, 2015. Burning characteristics of pulverized coal within blast furnace raceway at various injection operations and ways of oxygen enrichment. Fuel, 143: 98-106.
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  5. Chen, W.H., S.H. Liu, T.T. Juang, C.M. Tsai and Y.Q. Zhuang, 2015. Characterization of solid and liquid products from bamboo torrefaction. Applied Energy, (In Press). 10.1016/j.apenergy.2015.03.022.
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  6. Chen, W.H., M.Y. Huang, J.S. Chang, C.Y. Chen and W.J. Lee, 2015. An energy analysis of torrefaction for upgrading microalga residue as a solid fuel. Bioresour. Technol., 185: 285-293.
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  7. Chen, W.H., J. Peng and X.T. Bi, 2015. A state-of-the-art review of biomass torrefaction, densification and applications. Renewable Sustainable Energy Rev., 44: 847-866.
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  8. Chen, W.H., C.Y. Liao, C.C. Wang, C.I. Hung and C.C. Wu, 2015. Evaluation of power generation from thermoelectric cooler at normal and low-temperature cooling conditions. Energy Sustain. Dev., 25: 8-16.
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  9. Chen, W.H., B.J. Lin, M.Y. Huang and J.S. Chang, 2015. Thermochemical conversion of microalgal biomass into biofuels: A review. Bioresour. Technol., 184: 314-327.
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  10. Chen, W.H., 2015. [Green Energy and Sustainable Development]. 2nd Edn., Gau-Lih Books Co. Ltd., Taiwan, ISBN: 9789864129652, Pages: 437, (In Chinese).
  11. Chen, W.H., 2015. [Biomass and Bioenergy]. 4th Edn., Gau-Lih Books Co. Ltd., Taiwan, ISBN: 9789864128822, Pages: 150, (In Chinese).
  12. Chen, W.H., 2015. [An Introduction to Energy]. 8th Edn., Gau-Lih Books Co. Ltd., Taiwan, ISBN: 9789864128945, Pages: 250, (In Chinese).
  13. Chen, W.H. and S.C. Lin, 2015. Reaction phenomena of catalytic partial oxidation of methane under the impact of carbon dioxide addition and heat recirculation. Energy, 82: 206-217.
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  14. Chen, W.H. and S.C. Lin, 2015. Characterization of catalytic partial oxidation of methane with carbon dioxide utilization and excess enthalpy recovery. Applied Energy, (In Press). 10.1016/j.apenergy.2015.01.056.
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  15. Chen, W.H. and C.L. Jiang, 2015. [Air Pollution and Its Control]. 14th Edn., Gau-Lih Books Co. Ltd., Taiwan, ISBN: 9789864128600, Pages: 280, (In Chinese).
  16. Lu, J.J. and W.H. Chen, 2014. Product yields and characteristics of corncob waste under various torrefaction atmospheres. Energies, 7: 13-27.
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  17. Kuo, P.C., W. Wu and W.H. Chen, 2014. Gasification performances of raw and torrefied biomass in a downdraft fixed bed gasifier using thermodynamic analysis. Fuel, 117: 1231-1241.
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  18. Du, S.W., W.H. Chen and J.A. Lucas, 2014. Pretreatment of biomass by torrefaction and carbonization for coal blend used in pulverized coal injection. Bioresour. Technol., 161: 333-339.
    CrossRef  |  Direct Link  |  
  19. Chen, W.H., Z.Y. Wu and J.S. Chang, 2014. Isothermal and non-isothermal torrefaction characteristics and kinetics of microalga Scenedesmus obliquus CNW-N. Bioresour. Technol., 155: 245-251.
    CrossRef  |  Direct Link  |  
  20. Chen, W.H., P.C. Kuo, S.H. Liu and W. Wu, 2014. Thermal characterization of oil palm fiber and eucalyptus in torrefaction. Energy, 71: 40-48.
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  21. Chen, W.H., M.Y. Huang, J.S. Chang and C.Y. Chen, 2014. Thermal decomposition dynamics and severity of microalgae residues in torrefaction. Bioresour. Technol., 169: 258-264.
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  22. Chen, W.H., M.H. Tsai and C.I. Hung, 2014. Characterization of transient CO2 transport in two convecting aerosol droplets in tandem. Aerosol Air Qual. Res., 14: 207-219.
    Direct Link  |  
  23. Chen, W.H., M.H. Hsia, Y.H. Chi, Y.L. Lin and C.C. Yang, 2014. Polarization phenomena of hydrogen-rich gas in high-permeance Pd and Pd-Cu membrane tubes. Applied Energy, 113: 41-50.
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  24. Chen, W.H., K.M. Lu, W.J. Lee, S.H. Liu and T.C. Lin, 2014. Non-oxidative and oxidative torrefaction characterization and SEM observations of fibrous and ligneous biomass. Applied Energy, 114: 104-113.
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  25. Chen, W.H., C.H. Lin and Y.L. Lin, 2014. Flow-field design for improving hydrogen recovery in a palladium membrane tube. J. Membrane Sci., 472: 45-54.
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  26. Chen, W.H., C.C. Wang, C.I. Hung, C.C. Yang and R.C. Juang, 2014. Modeling and simulation for the design of thermal-concentrated solar thermoelectric generator. Energy, 64: 287-297.
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  27. Chen, W.H., C.C. Wang and C.I. Hung, 2014. Geometric effect on cooling power and performance of an integrated thermoelectric generation-cooling system. Energy Convers. Manage., 87: 566-575.
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  28. Chen, W.H., 2014. CO2 conversion for syngas production in methane catalytic partial oxidation. J. CO2 Utilization, 5: 1-9.
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  29. Chen, J.C. and W.H. Chen, 2014. Planning of methane emission control from hoggery using an inexact two-stage optimization model. J. Air Waste Manage. Assoc., 64: 1140-1153.
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  30. Lu, K.M., W.J. Lee, W.H. Chen and T.C. Lin, 2013. Thermogravimetric analysis and kinetics of co-pyrolysis of raw/torrefied wood and coal blends. Applied Energy, 105: 57-65.
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  31. Lu, K.M., S.H. Liu, W.H. Chen and W.J. Lee, 2013. Effect of oxidative atmospheres on the torrefaction of biomass. Mining Metallurgy, 57: 48-59.
  32. Chen, W.H., Y.C. Cheng and C.I. Hung, 2013. Enhancement of heat recirculation on the hysteresis effect of catalytic partial oxidation of methane. Int. J. Hydrogen Energy, 38: 10394-10406.
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  33. Chen, W.H., W.Z. Syu, C.I. Hung, Y.L. Lin and C.C. Yang, 2013. Influences of geometry and flow pattern on hydrogen separation in a Pd-based membrane tube. Int. J. Hydrogen Energy, 38: 1145-1156.
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  34. Chen, W.H., S.M. Chen and C.I. Hung, 2013. Carbon dioxide capture by single droplet using Selexol, Rectisol and water as absorbents: A theoretical approach. Applied Energy, 111: 731-741.
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  35. Chen, W.H., S.M. Chen and C.I. Hung, 2013. A theoretical approach of absorption processes of air pollutants in sprays under droplet-droplet interaction. Sci. Total Environ., 444: 336-346.
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  36. Chen, W.H., M.H. Tsai and C.I. Hung, 2013. Numerical prediction of CO2 capture process by a single droplet in alkaline spray. Applied Energy, 109: 125-134.
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  37. Chen, W.H., M.H. Hsia, Y.L. Lin, Y.H. Chi and C.C. Yang, 2013. Hydrogen permeation and recovery from H2-N2 gas mixtures by Pd membranes with high permeance. Int. J. Hydrogen Energy, 38: 14730-14742.
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  38. Chen, W.H., K.M. Lu, S.H. Liu, C.M. Tsai, W.J. Lee and T.C. Lin, 2013. Biomass torrefaction characteristics in inert and oxidative atmospheres at various superficial velocities. Bioresour. Technol., 146: 152-160.
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  39. Chen, W.H., H.J. Liou and C.I. Hung, 2013. Kinetics development and numerical simulation of methane thermocatalytic decomposition at the early stage and steady state. Int. J. Hydrogen Energy, 38: 5270-5284.
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  40. Chen, W.H., H.J. Liou and C.I. Hung, 2013. A numerical approach of interaction of methane thermocatalytic decomposition and microwave irradiation. Int. J. Hydrogen Energy, 38: 13260-13271.
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  41. Chen, W.H., C.J. Chen and C.I. Hung, 2013. Taguchi approach for co-gasification optimization of torrefied biomass and coal. Bioresour. Technol., 144: 615-622.
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  42. Chen, W.H., C.J. Chen and C.I. Hung, 2013. A comparison of gasification phenomena among raw biomass, torrefied biomass and coal in an entrained-flow reactor. Applied Energy, 112: 421-430.
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  43. Chen, W.H. and B.J. Lin, 2013. Hydrogen production and thermal behavior of methanol autothermal reforming and steam reforming triggered by microwave heating. Int. J. Hydrogen Energy, 38: 9973-9983.
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  44. Chen, W.H. and B.J. Lin, 2013. Hydrogen and synthesis gas production from activated carbon and steam via reusing carbon dioxide. Applied Energy, 101: 551-559.
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  45. Wang, C.C., C.I. Hung and W.H. Chen, 2012. Design of heat sink for improving the performance of thermoelectric generator using two-stage optimization. Energy, 39: 236-245.
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  46. Shen, C.H., W.H. Chen, H.W. Hsu, J.Y. Sheu and T.H. Hsieh, 2012. Co‐gasification performance of coal and petroleum coke blends in a pilot‐scale pressurized entrained‐flow gasifier. Int. J. Energy Res., 36: 499-508.
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  47. Lu, K.M., W.J. Lee, W.H. Chen, S.H. Liu and T.C. Lin, 2012. Torrefaction and low temperature carbonization of oil palm fiber and eucalyptus in nitrogen and air atmospheres. Bioresour. Technol., 123: 98-105.
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  48. Chen, W.H., Y.Y. Chen and C.I. Hung, 2012. Transient SO2 uptake dynamics in an atmospheric water aerosol with internal circulation and chemical dissociation. J. Atmos. Solar-Terrestrial Phys., 77: 67-77.
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  49. Chen, W.H., Y.L. Hou and C.I. Hung, 2012. A study of influence of acoustic excitation on carbon dioxide capture by a droplet. Energy, 37: 311-321.
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  50. Chen, W.H., Y.C. Cheng and C.I. Hung, 2012. Transient reaction and exergy analysis of catalytic partial oxidation of methane in a Swiss-roll reactor for hydrogen production. Int. J. Hydrogen Energy, 37: 6608-6619.
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  51. Chen, W.H., Y.C. Cheng and C.I. Hung, 2012. Entropy generation from hydrogen production of catalytic partial oxidation of methane with excess enthalpy recovery. Int. J. Hydrogen Energy, 37: 14167-14177.
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  52. Chen, W.H., W.Z. Syu, C.I. Hung, Y.L. Lin and C.C. Yang, 2012. A numerical approach of conjugate hydrogen permeation and polarization in a Pd membrane tube. Int. J. Hydrogen Energy, 37: 12666-12679.
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  53. Chen, W.H., T.C. Cheng, C.I. Hung and B.J. Lin, 2012. Chemical reactions and kinetics of a low-temperature water gas shift reaction heated by microwaves. Int. J. Hydrogen Energy, 37: 276-289.
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  54. Chen, W.H., S.W. Du, C.H. Tsai and Z.Y. Wang, 2012. Torrefied biomasses in a drop tube furnace to evaluate their utility in blast furnaces. Bioresour. Technol., 111: 433-438.
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  55. Chen, W.H., S.C. Ye and H.K. Sheng, 2012. Hydrothermal carbonization of sugarcane bagasse via wet torrefaction in association with microwave heating. Bioresour. Technol., 118: 195-203.
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  56. Chen, W.H., S.C. Ye and H.K. Sheen, 2012. Hydrolysis characteristics of sugarcane bagasse pretreated by dilute acid solution in a microwave irradiation environment. Applied Energy, 93: 237-244.
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  57. Chen, W.H., K.M. Lu and C.M. Tsai, 2012. An experimental analysis on property and structure variations of agricultural wastes undergoing torrefaction. Applied Energy, 100: 318-325.
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  58. Chen, W.H., C.Y. Liao, C.I. Hung and W.L. Huang, 2012. Experimental study on thermoelectric modules for power generation at various operating conditions. Energy, 45: 874-881.
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  59. Chen, W.H., C.Y. Liao and C.I. Hung, 2012. A numerical study on the performance of miniature thermoelectric cooler affected by Thomson effect. Applied Energy, 89: 464-473.
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  60. Chen, W.H., B.J. Lin, H.M. Lee and M.H. Huang, 2012. One-step synthesis of dimethyl ether from the gas mixture containing CO2 with high space velocity. Applied Energy, 98: 92-101.
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  61. Chen, W.H. and J.J. Lu, 2012. Hydrogen production from water gas shift reactions in association with separation using a palladium membrane tube. Int. J. Energy Res., 36: 346-354.
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  62. Chen, W.H. and H.M. Lee, 2012. Pretreatment and gasification technologies of biomass. Chem. Eng., 59: 3-13.
  63. Chen, W.H, Y.L. Hou and C.I. Hung, 2012. Influence of droplet mutual interaction on carbon dioxide capture process in sprays. Applied Energy, 92: 185-193.
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  64. Chen, W.H, M.R. Lin, A.B. Yu, S.W. Du and T.S. Leu, 2012. Hydrogen production from steam reforming of coke oven gas and its utility for indirect reduction of iron oxides in blast furnace. Int. J. Hydrogen Energy, 37: 11748-11758.
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  65. Chen, C.J., C.I. Hung and W.H. Chen, 2012. Numerical investigation on performance of coal gasification under various injection patterns in an entrained flow gasifier. Applied Energy, 100: 218-228.
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  66. Lee, W.J., Y.C. Liu, F.K. Mwangi, W.H. Chen and S.L. Lin et al., 2011. Assessment of energy performance and air pollutant emissions in a diesel engine generator fueled with water-containing ethanol-biodiesel-diesel blend of fuels. Energy, 36: 5591-5599.
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  67. Chen, W.H., Y.Y. Chen and C.I. Hung, 2011. A simplified model of predicting SO2 absorption by single atmospheric raindrops with chemical dissociation and internal circulation. Aerosol Air Qual. Res., 11: 860-872.
    Direct Link  |  
  68. Chen, W.H., Y.L. Hou and C.I. Hung, 2011. A theoretical analysis of the capture of greenhouse gases by single water droplet at atmospheric and elevated pressures. Applied Energy, 88: 5120-5130.
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  69. Chen, W.H., Y.J. Tu and H.K. Sheen, 2011. Disruption of sugarcane bagasse lignocellulosic structure by means of dilute sulfuric acid pretreatment with microwave-assisted heating. Applied Energy, 88: 2726-2734.
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  70. Chen, W.H., W.Z. Syu and C.I. Hung, 2011. Numerical characterization on concentration polarization of hydrogen permeation in a Pd-based membrane tube. Int. J. Hydrogen Energy, 36: 14734-14744.
    CrossRef  |  Direct Link  |  
  71. Chen, W.H., W.Y. Cheng, K.M. Lu and Y.P. Huang, 2011. An evaluation on improvement of pulverized biomass property for solid fuel through torrefaction. Applied Energy, 88: 3636-3644.
    CrossRef  |  Direct Link  |  
  72. Chen, W.H., T.C. Cheng and C.I. Hung, 2011. Numerical predictions on thermal characteristic and performance of methanol steam reforming with microwave-assisted heating. Int. J. Hydrogen Energy, 36: 8279-8291.
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  73. Chen, W.H., T.C. Cheng and C.I. Hung, 2011. Modeling and simulation of microwave double absorption on methanol steam reforming for hydrogen production. Int. J. Hydrogen Energy, 36: 333-344.
    CrossRef  |  Direct Link  |  
  74. Chen, W.H., M.R. Lin, T.S. Leu and S.W. Du, 2011. An evaluation of hydrogen production from the perspective of using blast furnace gas and coke oven gas as feedstocks. Int. J. Hydrogen Energy, 36: 11727-11737.
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  75. Chen, W.H., H.C. Hsu, K.M. Lu, W.J. Lee and T.C. Lin, 2011. Thermal pretreatment of wood (Lauan) block by torrefaction and its influence on the properties of the biomass. Energy, 36: 3012-3021.
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  76. Chen, W.H. and Y.J. Syu, 2011. Thermal behavior and hydrogen production of methanol steam reforming and autothermal reforming with spiral preheating. Int. J. Hydrogen Energy, 36: 3397-3408.
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  77. Chen, W.H. and P.C. Kuo, 2011. Torrefaction and co-torrefaction characterization of hemicellulose, cellulose and lignin as well as torrefaction of some basic constituents in biomass. Energy, 36: 803-811.
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  78. Chen, W.H. and P.C. Kuo, 2011. Isothermal torrefaction kinetics of hemicellulose, cellulose, lignin and xylan using thermogravimetric analysis. Energy, 36: 6451-6460.
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  79. Chen, W.H. and P.C. Hsu, 2011. Hydrogen permeation measurements of Pd and Pd-Cu membranes using dynamic pressure difference method. Int. J. Hydrogen Energy, 36: 9355-9366.
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  80. Du, S.W., W.H. Chen and J.A. Lucas, 2010. Pulverized coal burnout in blast furnace simulated by a drop tube furnace. Energy, 35: 576-581.
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  81. Chen, W.H., Y.J. Tu and H.K. Sheen, 2010. Impact of dilute acid pretreatment on the structure of bagasse for bioethanol production. Int. J. Energy Res., 34: 265-274.
    CrossRef  |  Direct Link  |  
  82. Chen, W.H., T.W. Chiu and C.I. Hung, 2010. Hysteresis loops of methane catalytic partial oxidation for hydrogen production under the effects of varied Reynolds number and Damkohler number. Int. J. Hydrogen Energy, 35: 6291-6302.
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  83. Chen, W.H., T.W. Chiu and C.I. Hung, 2010. Hydrogen production from methane under the interaction of catalytic partial oxidation, water gas shift reaction and heat recovery. Int. J. Hydrogen Energy, 35: 12808-12820.
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  84. Chen, W.H., T.W. Chiu and C.I. Hung, 2010. Enhancement effect of heat recovery on hydrogen production from catalytic partial oxidation of methane. Int. J. Hydrogen Energy, 35: 7427-7440.
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  85. Chen, W.H., M.R. Lin, J.J. Lu, Y. Chao and T.S. Leu, 2010. Thermodynamic analysis of hydrogen production from methane via autothermal reforming and partial oxidation followed by water gas shift reaction. Int. J. Hydrogen Energy, 35: 11787-11797.
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  86. Chen, W.H., M.R. Lin and T.S. Leu, 2010. Optimal heating and energy management for slabs in a reheating furnace. J. Mar. Sci. Technol., 18: 24-31.
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  87. Chen, W.H., B.J. Hsu and B.J. Lin, 2010. Hydrogen permeation dynamics across a palladium membrane in a varying pressure environment. Int. J. Hydrogen Energy, 35: 5410-5418.
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  88. Chen, W.H. and Y.J. Syu, 2010. Hydrogen production from water gas shift reaction in a high gravity (Higee) environment using a rotating packed bed. Int. J. Hydrogen Energy, 35: 10179-10189.
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  89. Chen, W.H. and W.Y. Cheng, 2010. Investigation of methane decomposition for hydrogen production using activated carbon. Combust. Q., 19: 29-37.
  90. Chen, W.H. and P.C. Kuo, 2010. A study on torrefaction of various biomass materials and its impact on lignocellulosic structure simulated by a thermogravimetry. Energy, 35: 2580-2586.
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  91. Chen, W.H. and I.H. Chiu, 2010. Modeling of transient hydrogen permeation process across a palladium membrane. Applied Energy, 87: 1023-1032.
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  92. Chen, W.H. and B.J. Lin, 2010. Effect of microwave double absorption on hydrogen generation from methanol steam reforming. Int. J. Hydrogen Energy, 35: 1987-1997.
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  93. Chen, W.H., T.W. Chiu, C.I. Hung and M.R. Lin, 2009. Hysteresis and reaction characterization of methane catalytic partial oxidation on rhodium catalyst. J. Power Sources, 194: 467-477.
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  94. Chen, W.H. and J.S. Wu, 2009. An evaluation on rice husks and pulverized coal blends using a drop tube furnace and a thermogravimetric analyzer for application to a blast furnace. Energy, 34: 1458-1466.
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  95. Chen, W.H. and I.H. Chiu, 2009. Transient dynamic of hydrogen permeation through a palladium membrane. Int. J. Hydrogen Energy, 34: 2440-2448.
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  96. Yang, S.Y., Y.Y. Li, J.L. Jeng and W.H. Chen, 2008. Spatial measurement of simultaneous CH and C2 chemiluminescence on Bunsen flame structure. Combust. Q., 17: 2-14.
  97. Chen, W.H., T.C. Hsieh and T.L. Jiang, 2008. An experimental study on carbon monoxide conversion and hydrogen generation from water gas shift reaction. Energy Convers. Manage., 49: 2801-2808.
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  98. Chen, W.H., S.W. Du, H.H. Yang and J.S. Wu, 2008. Formation characteristics of aerosol particles from pulverized coal pyrolysis in high-temperature environments. J. Air Waste Manage. Assoc., 58: 702-710.
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  99. Chen, W.H., M.R. Lin, T.L. Jiang and M.H. Chen, 2008. Modeling and simulation of hydrogen generation from high-temperature and low-temperature water gas shift reactions. Int. J. Hydrogen Energy, 33: 6644-6656.
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  100. Chen, W.H., J.G. Jheng and A.B. Yu, 2008. Hydrogen generation from a catalytic water gas shift reaction under microwave irradiation. Int. J. Hydrogen Energy, 33: 4789-4797.
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  101. Chen, J.C. and W.H. Chen, 2008. Diagnostic analysis of a small-scale incinerator by the Garson index. Inform. Sci., 178: 4560-4570.
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  102. Wang, H.Y., W.H. Chen and C.K. Law, 2007. Extinction of counterflow diffusion flames with radiative heat loss and nonunity Lewis numbers. Combust. Flame, 148: 100-116.
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  103. Lee, J.S., H.C. Liu, W.H. Chen, H.P. Chen and L.C. Weng, 2007. A numerical study on reaction characteristics of propane detonation. Combust. Q., 16: 35-42.
  104. Du, S.W., W.H. Chen and J. Lucas, 2007. Performances of pulverized coal injection in blowpipe and tuyere at various operational conditions. Energy Convers. Manage., 48: 2069-2076.
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  105. Chen, W.H., S.W. Du and J.H. Yang, 2007. Volatile release and particle formation characteristics of injected pulverized coal in blast furnaces. Energy Convers. Manage., 48: 2025-2033.
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  106. Chen, W.H., J.C. Chen, C.D. Tsai and T.L. Jiang, 2007. Transient gasification and syngas formation from coal particles in a fixed-bed reactor. Int. J. Energy Res., 31: 895-911.
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  107. Chen, W.H., J.C. Chen, C.D. Tsai and S.W. Du, 2007. Experimental study of coal pyrolysis and gasification in association with syngas combustion. J. Mech., 23: 319-327.
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  108. Chen, W.H., 2007. A simplified model of predicting coal gasification performance in a drop tube furnace. Int. Commun. Heat Mass Transfer, 34: 623-639.
  109. Chen, W.H. and J.G. Jheng, 2007. Characterization of water gas shift reaction in association with carbon dioxide sequestration. J. Power Sources, 172: 368-375.
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  110. Du, S.W. and W.H. Chen, 2006. Numerical prediction and practical improvement of pulverized coal combustion in blast furnace. Int. Commun. Heat Mass Transfer, 33: 327-334.
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  111. Chen, W.H., 2006. Scavenging waves and influence distances of gas absorption around single liquid aerosols in clouds. Atmos. Environ., 40: 500-511.
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  112. Chen, W.H., 2006. Air pollutant absorption by single moving droplets with drag force at moderate Reynolds numbers. Chem. Eng. Sci., 61: 449-458.
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  113. Chen, W.H., Y.C. Chung and J.L. Liu, 2005. Analysis on energy consumption and performance of reheating furnaces in a hot strip mill. Int. Commun. Heat Mass Transfer, 32: 695-706.
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  114. Chen, W.H. and C.C. Liu, 2005. Numerical simulation on air pollutant uptake by a single droplet with deceleration. Trans. Aeronautical Astronautical Soc. Republic China, 37: 163-170.
  115. Chen, J.C., W.H. Chen, N.B. Chang, E. Devila and C.H. Tsai, 2005. Interactive analysis of waste recycling and energy recovery program in a small-scale incinerator. J. Air Waste Manage. Assoc., 55: 1356-1366.
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  116. Liu, C.C., W.H. Chen and T.L. Jiang, 2004. Model of unsteady n-octane droplet burning in high-temperature streams. Combustion Sci. Technol., 176: 183-213.
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  117. Chen, W.H., 2004. Atmospheric ammonia scavenging mechanisms around a liquid droplet in convective flow. Atmos. Environ., 38: 1107-1116.
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  118. Chen, W.H. and C.Y. Hong, 2004. Mass transfer of a moving liquid aerosol with deceleration. J. Aerosol Sci., 35: S993-S994.
  119. Chen, W.H., 2003. Waste burning and heat recovery characteristics of a mass burn incineration system. J. Air Waste Manage. Assoc., 53: 136-142.
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  120. Chen, W.H., 2003. Carbon dioxide absorption by a cloud aerosol with solid nucleus. J. Aerosol Sci., 34: S339-S340.
  121. Chen, W.H. and Y.C. Chung, 2003. Transient mass transfer and vortex bifurcation of an aerosol droplet in motion. Aerosol Sci. Technol., 37: 640-658.
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  122. Chen, W.H. and J.J. Lu, 2003. Microphysics of atmospheric carbon dioxide uptake by a cloud droplet containing a solid nucleus. J. Geophys. Res.-Atmos., Vol. 108. 10.1029/2002JD003318.
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  123. Chen, W.H. and J.J. Lu, 2003. Internal flow and modeling of sulfur dioxide uptake by a moving water aerosol. J. Aerosol Sci., 34: S865-S866.
  124. Liu, J.L. and W.H. Chen, 2002. Aerodynamic and noise computations of high-speed train and tunnel interaction. Trans. Aeronautical Astronautical Soc. Republic China, 34: 229-238.
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  125. Chen, W.H., 2002. Brachial burning and gasification split of a convecting two-droplet system. Atomization Sprays, 12: 29-47.
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  126. Chen, W.H., 2002. An analysis of gas absorption by a liquid aerosol in a stationary environment. Atmos. Environ., 36: 3671-3683.
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  127. Chen, W.H., 2001. Unsteady absorption of sulfur dioxide by an atmospheric water droplet with internal circulation. Atmos. Environ., 35: 2375-2393.
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  128. Chen, W.H., 2001. Tri-brachial flames around two interactive droplets in flows with fuel vapor. Int. Commun. Heat Mass Transfer, 28: 545-554.
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  129. Chen, W.H., 2001. Dynamics of sulfur dioxide absorption in a raindrop falling at terminal velocity. Atmos. Environ., 35: 4777-4790.
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  130. Chen, W.H. and J.C. Chen, 2001. Combustion characteristics and energy recovery of a small mass burn incinerator. Int. Commun. Heat Mass Transfer, 28: 299-310.
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