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논문 기본 정보

자료유형
학술저널
저자정보
김수현 (고등기술연구원) 유영돈 (고등기술연구원) 김형택 (아주대학교) 최익환 (삼환이엔테크)
저널정보
한국에너지기후변화학회 에너지기후변화학회지 에너지기후변화학회지 Vol.2 No.2
발행연도
2007.10
수록면
131 - 139 (9page)

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초록· 키워드

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Waste is considered as a discard matter which needs a special disposal method. At present, combustion and gasification are representative technologies as the thermal treatment of waste. Combustion technologies convert the elements carbon(C), hydrogen(H) and sulphur(S) to CO₂, H₂O and sax. But the combustion processes have some restrictions such as emissions of air pollution materials, limits of energy use and limits of CO₂ control. To make up for these weak points in the current combustion technology, many research and development of technologies are in progress and the one of these technologies is the gasification. Gasification is a process that converts carbonaceous materials, such as coal, biomass, or waste into carbon monoxide and hydrogen. The resulting gas mixture is called synthesis gas or syngas and is itself a fuel. Gasification is a very efficient method for extracting energy from many different types of organic materials, and also has applications as a clean waste disposal technique. The advantage of gasification is that using the syngas is more efficient than direct combustion of the original fuel, more of the energy contained in the fuel is extracted. Syngas may be burned directly in internal combustion engines, used to produce methanol and hydrogen, or converted via the Fischer- Tropsch process into synthetic fuel. Thus, gasification may be an important technology for renewable energy. In this study, the effect of CO₂ reduction of gasification is estimated from the comparison of the CO₂ production per unit power on the combustion and gasification.

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Abstract
1. 서론
2. 폐기물 가스화 용융 처리 특징
3. 합성가스 이용 방법
4. 결론
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