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자료유형
학술저널
저자정보
김하진 (조선대학교) 전영남 (조선대학교)
저널정보
한국에너지기후변화학회 에너지기후변화학회지 에너지기후변화학회지 Vol.16 No.2
발행연도
2021.12
수록면
276 - 286 (11page)

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Biogas contains methane (CH₄) and carbon dioxide (CO₂) as its main components, and is known as a greenhouse gas that causes climate change and is a good renewable energy resource. The energy production technology through biogas reforming is a technology that reduces greenhouse gas and converts it to high-quality energy, and the microwave reforming characteristics were studied. In this study, the carbon receptor(Chacoal), which is well-known as a microwave receptor, and the high temperature receptor related to dielectric properties were investigated for the dry reforming characteristics. The carbon receptor, charcoal, was mixed with a microwave receptor as a basis to determine the receptor modification characteristics. A study was conducted on the reforming characteristics according to the type of receptor, the receptor modification temperature, the mixing ratio of the receptor, and characteristics of receptor carrying the catalyst, and the results are as follows. As a result of reforming by mixing charcoal and SiC and Al₂O₃, which are microwave receptors, respectively, the initial charcoal and SiC are heated by microwaves. became the conversion of methane and carbon dioxide appeared similar at the reforming beginning, but toward the rear end, the conversion rate and hydrogen (H₂) + carbon monoxide (CO) production were higher when mixed with Al₂O₃, and in this case, the conversion rate was measured to be low. The smaller the Al₂O₃ mixing ratio, the higher the reforming temperature, the higher the conversion rate and the product gas concentration. When the reforming reaction was carried out by supporting the Ni-catalyst on the microwave receptor, the conversion rate was kept constant until the end of the reforming.

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ABSTRACT
1. 서론
2. 실험장치 및 방법
3. 결과 및 토론
4. 결론
References

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