활성탄 담지 몰리브덴 촉매를 이용한 합성가스 직접 메탄화 반응

Direct Methanation of Syngas over Activated Charcoal Supported Molybdenum Catalyst
  • 김성수
  • 이승재
  • 박성열
  • 김진걸

초록

The kinetics of direct methanation over activated charcoal-supported molybdenum catalyst at 30 bar was studied in a cylindrical fixed-bed reactor. When the temperature was not higher than 400℃, the CO conversion increased with increasing temperature according to the Arrhenius law of reaction kinetics. While XRD and Raman analysis showed that Mo was present as Mo oxides after reduction or methanation, TEM and XPS analysis showed that Mo2C was formed after methanation depending on the loading of Mo precursor. When the temperature was as high as 500℃, the CO conversion was dependent not only on the Arrhenius law but also on the catalyzed reaction by nanoparticles, which came off from the reactor and thermocouple by metal dusting. These nanoparticles were made of Ni, Fe, Cr and alloy, and attributed to the formation of carbon deposit on the wall of the reactor and on the surface of the thermocouple. The carbon deposit consisted of amorphous and disordered carbon filaments.

키워드

직접 메탄화활성탄 담지 몰리브덴 촉매금속 더스팅나노입자탄소 침적Direct methanationActivated charcoal-supported molybdenum catalystMetal dustingNanoparticleCarbon deposit
제목
활성탄 담지 몰리브덴 촉매를 이용한 합성가스 직접 메탄화 반응
제목 (타언어)
Direct Methanation of Syngas over Activated Charcoal Supported Molybdenum Catalyst
저자
김성수이승재박성열김진걸
발행일
2020
저널명
한국수소및신에너지학회논문집
31
5
페이지
419 ~ 428