TY - GEN
T1 - Hydrotalcite-dispersed paper-structured catalyst for dry reforming of methane
AU - Kakihara, Yasuo
AU - Shiratori, Yusuke
AU - Sakamoto, Mio
AU - Takada, Masaru
AU - Uchida, Tomomi
AU - Le, Hao
AU - Sasaki, Kazunari
N1 - Publisher Copyright:
© (2014) by the Committee of WHEC2014.
Copyright:
Copyright 2015 Elsevier B.V., All rights reserved.
PY - 2014
Y1 - 2014
N2 - High temperature solid oxide fuel cells (SOFCs) can accept the direct feed of hydrocarbon fuels which are reformed in the porous anode materials producing H2-rich syngas, subsequently used to generate electricity and heat through electrochemical oxidation. This type of SOFC is called direct internal reforming SOFC (DIR-SOFC). Now we try to overcome problems associated with the DIR-SOFC, such as carbon deposition caused by internal reforming, by applying a flexible structured-catalyst called paper-structured catalyst (PSC). Here, recent progresses are summarized focusing on the catalytic activity of hydrotalcite-containing PSCs for the dry reforming of methane.
AB - High temperature solid oxide fuel cells (SOFCs) can accept the direct feed of hydrocarbon fuels which are reformed in the porous anode materials producing H2-rich syngas, subsequently used to generate electricity and heat through electrochemical oxidation. This type of SOFC is called direct internal reforming SOFC (DIR-SOFC). Now we try to overcome problems associated with the DIR-SOFC, such as carbon deposition caused by internal reforming, by applying a flexible structured-catalyst called paper-structured catalyst (PSC). Here, recent progresses are summarized focusing on the catalytic activity of hydrotalcite-containing PSCs for the dry reforming of methane.
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M3 - Conference contribution
AN - SCOPUS:84924989911
T3 - 20th World Hydrogen Energy Conference, WHEC 2014
SP - 1411
EP - 1415
BT - 20th World Hydrogen Energy Conference, WHEC 2014
PB - Committee of WHEC2014
T2 - 20th World Hydrogen Energy Conference, WHEC 2014
Y2 - 15 June 2014 through 20 June 2014
ER -