论文著作:
1.Zhang FB, Wang N, Yang L, Li M, Huang LH*, Ni–Co bimetallic MgO-based catalysts for hydrogen production via steam reforming of acetic acid from bio-oil, International Journal of Hydrogen Energy, in press. ( SCI, IF: 4.054)
2.Zhang FB, Li M, Yang L, Ye SZ, Huang LH*, Ni-Mg-Mn-Fe-O catalyst derived from layered double hydroxide for hydrogen production by auto-thermal reforming of ethanol, Catalysis Communications, 2014, 43:6-10. ( SCI, IF: 3.000)
3.Huang LH*, Zhou J, Hsu A, Chen RR*, Catalytic partial oxidation of n-butanol for hydrogen production over LDH-derived Ni-based catalysts, International Journal of Hydrogen Energy, 2013, 38:14550-14558. ( SCI, IF: 4.054)
4.Ning Wang, Kui Shen, Lihong Huang, Xiaopeng Yu, Weizhong Qian,* and Wei Chu*, Facile Route for Synthesizing Ordered Mesoporous Ni?Ce?Al Oxide Materials and Their Catalytic Performance for Methane Dry Reforming to Hydrogen and Syngas, ACS Catalysis, 2013 (3):1638-1651. (SCI, IF: 5.265)
5. Huang LH, Zhang FB, Chen RR, Hsu A, Manganese-promoted nickel/alumina catalysts for hydrogen production via auto-thermal reforming of ethanol, International Journal of Hydrogen Energy,2012, in press. ( SCI, IF: 4.054)
6. Huang LH, Zhang FB, Chen RR, Hsu A, Nickel-based perovskite catalysts with iron-doping via self-combustion for hydrogen production in auto-thermal reforming of Ethanol, International Journal of Hydrogen Energy,2012, 37:1272-1279. ( SCI, IF: 4.054)
7. Lihong Huang, Qi Liu, Rongrong Chen, Andrew T. Hsu, Hydrogen production via auto-thermal reforming of bio-ethanol: The role of iron in layered double hydroxide-derived Ni0.35Mg2.65AlO4.5±δ catalysts, Applied Catalysis A: General, 393 (2011) 302–308. ( SCI, IF: 3.903)
8. Huang LH, Chen RR, Chu D, Hsu A, Hydrogen Production through Auto-Thermal Reforming of Bio-Ethanol over Co-based Catalysts: Effect of Iron in Co/Al2O3 Catalysts, International Journal of Hydrogen Energy,2010, 35:1138-1146. ( SCI, IF: 4.054)
9. Huang LH, Liu Q, Chen RR, Chu D, Hsu A, Layered double hydroxide derived Co0.3Mg2.7Al1-xFexO4.5±δ catalysts for hydrogen production via auto-thermal reforming of bio-ethanol, Catalysis Communications, 2010, 12:40-45. (SCI, IF: 3.000)
10. Huang LH, Xie J, Chen RR, Chu D, Hsu A, Nanorod alumina-supported Ni-Zr-Fe/Al2O3 catalysts for hydrogen production in auto-thermal reforming of ethanol, Materials Research Bulletin, 2010, 45 (1): 92-96. ( SCI, IF: 2.105)
11. Huang LH, Xie J, Chen RR, Chu D, Hsu A, Fe Promoted Ni-Ce/Al2O3 in Auto-Thermal Reforming of Ethanol for Hydrogen Production, Catalysis Letters, 2009, 130 (3-4): 432-439. (SCI, IF: 2.242)
12. Huang LH, Xie J, Chu W, Chen RR, Chu D, Hsu A, Iron-promoted nickel-based catalysts for hydrogen generation via auto-thermal reforming of ethanol, Catalysis Communications, 2009, 10(5): 502-508. (SCI, IF: 3.000)
13. Huang LH, Xie J, Chen RR, Chu W, Chu D, Hsu A, Effect of iron on durability of nickel-based catalysts in auto-thermal reforming of ethanol for hydrogen production, International Journal of Hydrogen Energy, 2008, 33(24):7448-7456. ( SCI, IF: 4.054)