Long-Term Stability for Co-Electrolysis of CO2/Steam Assisted by Catalyst-Infiltrated Solid Oxide Cells

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초록

This study investigated the long-term durability of catalyst(Pd or Fe)-infiltrated solid oxide cells for CO2/steam co-electrolysis. Fuel-electrode supported solid oxide cells with dimensions of 5 x 5 cm(2) were fabricated, and palladium or iron was subsequently introduced via wet infiltration (as a form of PdO or FeO solution). The metallic catalysts were employed in the fuel-electrode to promote CO2 reduction via reverse water gas shift reactions. The metal-precursor particles were well-dispersed on the fuel-electrode substrate, which formed a bimetallic alloy with Ni embedded on the substrate during high-temperature reduction processes. These planar cells were tested using a mixture of H2O and CO2 to measure the electrochemical and gas-production stabilities during 350 h of co-electrolysis operations. The results confirmed that compared to the Fe-infiltrated cell, the Pd-infiltrated cell had higher stabilities for both electrochemical reactions and gas-production given its resistance to carbon deposition.

키워드

Solid oxide cellsCatalysts infiltrationCo-electrolysisCO2 conversionLong-term stabilitySYNGAS PRODUCTIONPD-NIDEGRADATIONHYDROGENH2O
제목
Long-Term Stability for Co-Electrolysis of CO2/Steam Assisted by Catalyst-Infiltrated Solid Oxide Cells
저자
Jeong, Hyeon-YeYoon, Kyung JoongLee, Jong-HoChung, Yong-ChaeHong, Jongsup
DOI
10.4191/kcers.2018.55.1.09
발행일
2018-01
유형
Article
저널명
한국세라믹학회지
55
1
페이지
50 ~ 54

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