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Direct biogas reforming to turquoise H2 and carbon material in a catalytic fluidised-bed reactor.

Authors :
L'hospital, Valentin
Goulart de Araujo, Leandro
Schuurman, Yves
Guilhaume, Nolven
Farrusseng, David
Source :
New Journal of Chemistry; 6/7/2024, Vol. 48 Issue 21, p9656-9662, 7p
Publication Year :
2024

Abstract

The conversion of methane or natural gas into turquoise H<subscript>2</subscript> and carbon represents a promising pathway towards decarbonised energy. The pyrolysis of biogas (mainly a mixture of methane and CO<subscript>2</subscript>) is considered to be a negative carbon-emission technology, as the carbon source comes from biomass and the carbon is captured in solid form. In addition, the presence of CO<subscript>2</subscript> in the gas mixture enables the dry reforming of methane into syngas. In this study, we show that direct biogas conversion in a fluidised catalytic reactor can produce a syngas whose composition meets the requirements for methanol synthesis or for liquid hydrocarbon production via the Fischer-Tropsch process. Confirmed by thermodynamic analysis, we show that the reaction proceeds at temperatures above 900 1C to produce carbon materials, whereas at lower temperatures the carbon is converted to CO by the Boudouard reaction. At 950 1C, very high methane and CO<subscript>2</subscript> conversions are achieved (490% and 99%, respectively), accompanied by high hydrogen yield (490%) and the sequestration of carbon into a turbostratic structure. We believe that the direct catalytic reforming of biogas in a fluidised bed, when combined in series with an FTS process, could allow the production of liquid fuels with no need for costly gas separation units, in particular those implemented for CO<subscript>2</subscript> capture. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
11440546
Volume :
48
Issue :
21
Database :
Complementary Index
Journal :
New Journal of Chemistry
Publication Type :
Academic Journal
Accession number :
177548922
Full Text :
https://doi.org/10.1039/d4nj00846d