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Hydrogen Generation from the H2O/H2O2/MnMoO4 System

H.Y. He

2011enhydrogenenergynanomaterialscatalysisrenewable

Abstract

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This research investigates the generation of hydrogen gas from the H2O/H2O2/MnMoO4 system, highlighting its potential as a clean energy resource. The objective was to explore the efficiency of hydrogen production using MnMoO4, a semiconductor synthesized via a sol-gel method. Various characterization techniques, including x-ray diffraction, transmission electron microscopy, and x-ray photoelectron spectrometry, were employed to analyze the MnMoO4 powder. The study demonstrates that the efficiency of hydrogen generation is positively correlated with the proportion of H2O, the amount of MnMoO4 powder, and the intensity of light irradiation. Experimental results indicate that the gas produced primarily consists of H2, O2, and H2O, with notable increases in hydrogen yield over extended reaction times, although efficiency declines after 40 hours. It was discovered that additional H2O can rejuvenate the reaction process, emphasizing the role of H2O2 in hydrogen generation. The findings propose a mechanism for the effective splitting of H2O and H2O2 to facilitate hydrogen production. Overall, this work contributes valuable insights into the capabilities of the H2O/H2O2/MnMoO4 system for sustainable hydrogen generation.

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@article{a01a2ace-d022-44a2-8b05-64f0c5851009,
  title={Hydrogen Generation from the H2O/H2O2/MnMoO4 System},
  author={H.Y. He},
  year={2011},
  language={en}
}
TY  - JOUR
TI  - Hydrogen Generation from the H2O/H2O2/MnMoO4 System
AU  - H.Y. He
PY  - 2011
LA  - en
ER  -

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