相原健司君(D3)、浅妻克弥君が中心となって行った担持WO3触媒を用いたグリセロール脱水反応によるアクロレイン生成に関する研究成果がRSC Advanced誌 (RSC)にAcceptされました。Our paper reporting the dehydration of glycerol to acrolein over WO3/Al2I3 catalysts was accepted in RSC Advanced (RSC).
「Highly Active and Durable WO3/Al2O3 Catalysts for Gas-phase Dehydration of Polyols」
Aihara, Takeshi; Asazuma, Katsuya; Miura, Hiroki; Shishido, Tetsuya
RSC Advances, 2020, 10, 37538-375444. DOI: 10.1039/D0RA08340B
Gas-phase glycerol dehydration over WO3/Al2O3 catalysts was investigated. WO3 loading on γ-Al2O3 significantly affected the yield of acrolein and the catalyst with 20 wt% WO3 loading showed the highest activity. WO3/Al2O3 catalyst with 20 wt% WO3 loading showed higher activity and durability than the other supported WO3 catalysts and zeolites. The number of Brønsted acid sites and mesopores of WO3/Al2O3 catalyst did not decrease after the reaction, suggesting that glycerol has continuous access to Brønsted acid sites inside mesopores of WO3/Al2O3, thereby sustaining a high rate of formation of acrolein. Dehydration under an O2 flow further increased the durability of the WO3/Al2O3 catalyst, enabling the sustainable formation of acrolein. In addition, WO3/Al2O3 catalyst with 20 wt% WO3 loading showed high activity for the dehydration of various polyols to afford the corresponding products in high yield.
.