The Characteristics of Solar Thermochemical Methane Reforming using Ferrite-based Metal Oxides

페라이트계 금속산화물을 이용한 태양 열화학 메탄 개질 특성

  • 차광서 (충남대학교 정밀응용화학과) ;
  • 이동희 (충남대학교 정밀응용화학과) ;
  • 조원준 (한국가스공사 연구개발원) ;
  • 이영석 (충남대학교 정밀응용화학과) ;
  • 김영호 (충남대학교 정밀응용화학과)
  • Published : 2007.06.21

Abstract

Thermochemical 2-step methane reforming, involving the reduction of metal oxide with methane to produce syn-gas and the oxidation of the reduced metal oxide with water to produce pure hydrogen, was investigated on ferrite-based metal oxide mediums and $WO_{3}/ZrO_{2}$. Thermochemical 2-step methane reforming were accomplished at 900 $^{\circ}C$(syn-gas production step) and 800 $^{\circ}C$(water-splitting step). In syn-gas production step, it appeared carbon deposition on metal oxides with increasing react ion time. Various mediums showed the different starting point of carbon deposition each other. To minimize the carbon deposition, the reaction time was controlled before the starting point of carbon deposition. As a result, $CO_{x}$ were not evolved in water-splitting step, Among the various metal oxides, $Mn-ferrite/ZrO_{2}$ showed high reactivity, proper $H_{2}/CO$ ratio, high selectivity of undesired $CO_{2}$ and high evolution of $H_{2}$.

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