バイオマス 高温高圧水中部分酸化によるグルコースからの水素製造技術 (第2報) :反応機構およびギ酸の分解速度
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By partial oxidation of glucose with ZnO in high pressure high temperature water at 300°C, glucose was converted into H<SUB>2</SUB> with relatively high yield and without CH<SUB>4</SUB> formation. In order to understand the reaction mechanism and the optimum condition of the process, we performed glucose partial oxidation at 200-300°C to analyse an intermediate of H<SUB>2</SUB>, without ZnO, which probably promotes the intermediate into H<SUB>2</SUB>. As a result, we detected a high yield of HCOOH. The formation of HCOOH was sensitive to reaction temperature and the yield was the highest at 200°C among the experimental conditions. It was confirmed that the role of ZnO was a promoter of HCOOH decomposition into H<SUB>2</SUB> and CO<SUB>2</SUB> through HCOOH conversion experiments with and without ZnO at 200-300°C. The conversion of HCOOH with ZnO was within a few minutes at 300°C. Through the study, we suggested that two-stage reaction is effective for H<SUB>2</SUB> formation from glucose partial oxidation: the partial oxidation of glucose is conducted at 200°C and the conversion of HCOOH is achieved over 300°C. To confirm the idea, the two-stage reaction was performed: the partial oxidation of glucose was conducted at 200°C with ZnO followed to increase temperature up to 300°C for promotion of H<SUB>2</SUB> formation. The H<SUB>2</SUB> yield was less amount than expected. This was probably due that ZnO prohibited the formation of HCOOH on glucose partial oxidation at 200°C.
- 一般社団法人 日本エネルギー学会の論文
一般社団法人 日本エネルギー学会 | 論文
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