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EVA 수지 이용 연료유 생성을 위한 열분해 반응에서 실리카-알루미나 계열 무기물의 영향The Effects of Silica-Alumina Type Inorganic Compounds on the Pyrolysis Reaction of EVA to Produce Fuel-Oil

Other Titles
The Effects of Silica-Alumina Type Inorganic Compounds on the Pyrolysis Reaction of EVA to Produce Fuel-Oil
Authors
박영철최주홍오세희
Issue Date
2011
Publisher
한국수소및신에너지학회
Keywords
EVA; Pyrolysis; Fuel oil; Silica-alumina type; TGA; DSC; 에틸렌 비닐 아세테이트; 열분해; 연료유; 실리카-알루미나형; 열중량분석; 시차주사열분석
Citation
한국수소및신에너지학회논문집, v.22, no.5, pp 706 - 713
Pages
8
Indexed
KCI
Journal Title
한국수소및신에너지학회논문집
Volume
22
Number
5
Start Page
706
End Page
713
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/24185
ISSN
1738-7264
2288-7407
Abstract
The effects of silica-alumina type catalysts addition on the thermal decomposition of ethylene vinyl acetate (EVA) resin have been studied in a thermal analyzer (TGA, DSC) and a small batch reactor. The silica-alumina type compounds tested were kaolinite, bentonite, perlite, activated clay and clay. As the results of TGA experiments, pyrolysis starting temperature for EVA resin had the 1st pyrolysis temperature range of 300~400℃ and the 2nd pyrolysis temperature range of 425~525℃. The silica-alumina type catalysts did not affect the pyrolysis rate in EVA pyrolysis reaction. In the DSC experiments, addition of kaolinite and bentonite catalysts reduced the heat of fusion and heat of 2nd pyrolysis reaction. In the batch system experiments, the mixing of silica-alumina type catalysts enhanced the yield of fuel oil, and affected to the distribution of carbon numbers. In the silica-alumina type inorganic material used in this experiments, bentonite was the most effective from the pyrolysis heat, yields, and the characteristics of fuel oil.
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