谢广文   Professor

谢广文,教授,博士,长期从事纳米材料、微晶与非晶态材料研究与应用,在纳米材料表面改性、非晶态催化材料等领域取得了许多创新性成果。近年来在《燃料化学学报》、Chemical Engineering Journal、Carbon、Green Energy & Environment、Journal of Materials Chemistry A、Applied Surface Science、 ACS Applied Materials & Interfaces、Journal of Power Sources、Renewable Energy、Surface and Coatings Technolo...Detials

Hydrogen generation from alkaline NaBH4 solution using electroless-deposited Co-W-P supported on gamma-Al2O3

Release time:2021-03-15  Hits:

  • Key Words:Co-W-P/gamma-Al2O3 catalyst; Electroless deposition; Hydrogen generation; NaBH4
  • Abstract:Co-W-P alloy catalysts were prepared on gamma-Al2O3 supports by electroless deposition. Inductively coupled plasma atomic emission spectrometer(ICP-AES), field emission scanning electron microscope(SEM), energy dispersive X-ray spectrometer(EDS), X-ray diffraction(XRD), X-ray photoelectron spectroscopy(XPS) and nitrogen adsorption-desorption isotherm were used to characterize the Co-W-P/-gamma-Al2O3 catalysts. Hydrolysis of sodium borohydride solution to produce hydrogen was used as a probe reaction to evaluate the catalytic activity of the obtained catalysts. The influences of catalyst preparation conditions such as CoSO4/Na2WO4 concentration ratio in electroless bath, electroless deposition time and hydrolysis reaction conditions such as NaOH and NaBR4 concentrations, the amount of catalysts used and reaction temperature on the hydrogen generation rate were investigated in the paper. The results show that the obtained Co-W-P/gamma-Al2O3 catalysts exhibit excellent catalytic activity, the highest hydrogen generation rate can reach a 11.82 L min(-1) g(catalyst)(-1). The Co-W-P/gamma-Al2O3 catalysts also exhibit favorable cycling performance and lower activation energy (49.58 kJ mol(-1)). Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
  • Volume:40
  • Issue:25
  • Translation or Not:no