Title of article :
Solar hydrogen production from the thermal splitting
of methane in a high temperature solar chemical reactor
Author/Authors :
Ste´phane Abanades *، نويسنده , , Gilles Flamant، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2006
Abstract :
This study addresses the single-step thermal decomposition (pyrolysis) of methane without catalysts. The process coproduces
hydrogen-rich gas and high-grade carbon black (CB) from concentrated solar energy and methane. It is an
unconventional route for potentially cost effective hydrogen production from solar energy without emitting carbon dioxide
since solid carbon is sequestered.
A high temperature solar chemical reactor has been designed to study the thermal splitting of methane for hydrogen
generation. It features a nozzle-type graphite receiver which absorbs the solar power and transfers the heat to the flow
of reactant at a temperature that allows dissociation. Theoretical and experimental investigations have been performed
to study the performances of the solar reactor. The experimental set-up and effect of operating conditions are described
in this paper. In addition, simulation results are presented to interpret the experimental results and to improve the solar
reactor concept. The temperature, geometry of the graphite nozzle, gas flow rates, and CH4 mole fraction have a strong
effect on the final chemical conversion of methane. Numerical simulations have shown that a simple tubular receiver is not
enough efficient to heat the bulk gas in the central zone, thus limiting the chemical conversion. In that case, the reaction
takes place only within a thin region located near the hot graphite wall. The maximum CH4 conversion (98%) was obtained
with an improved nozzle, which allows a more efficient gas heating due to its higher heat exchange area.
2006 Elsevier Ltd. All rights reserved
Keywords :
Hydrogen , methane , Production , Solar reactor , CARBON BLACK , Cracking
Journal title :
Solar Energy
Journal title :
Solar Energy