Abstract
Traditional low-temperature H 2 production from methane needs high operating temperatures (above 500 °C), generates CO 2 emissions, and shows poor stability. This study focused on more low-temperature stable H 2 production from methane using a carbon-supported Ru catalyst (BS-Ru/C). This catalyst could stably generate H 2 without CO x at 200 °C over 15 days. The temperature for clean H 2 production in conjunction with carbon fixation was found to be 200-250 °C, far lower than around 550 °C for the conventional low-temperature methane catalytic decomposition (MCD). The BS-Ru/C catalyst enabled the occurrence of steam reforming of methane (SRM) at 260 °C, which far exceeded other previous low-temperature catalysts reported at around 500 °C. Although CO 2 was produced during the SRM process from 260 to 500 °C, no CO was produced. This lower-temperature stable H 2 production technology using the BS-Ru/C catalyst with outstanding ability and stability will provide a helping hand to build a H 2 society in near future.
Cite
CITATION STYLE
Lu, B., Inoue, M., & Abe, T. (2018). Hydrogen production from methane at 200 to 500 °c-clean hydrogen production in conjunction with carbon fixation at 200 to 250 °c. Sustainable Energy and Fuels, 2(4), 795–802. https://doi.org/10.1039/c7se00572e
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