野本賢俊君、久保裕真君が中心となって行ったPdドープCu/ZnO/Al2O3触媒によるメタノール酸化的改質に関する研究成果がJournal of the Japan Petroleum Institute誌 (JRI)にAcceptされました。Our paper reporting the autothermal reforming of methanol over Pd-doped Cu/ZnO/Al2O3 catalyst was accepted in Journal of the Japan Petroleum Institute (JRI).
「Production of hydrogen by the autothermal reforming of methanol over Cu/ZnO/Al2O3-based catalysts: Improved durability and self-activation ability upon Pd-doping」
Nomoto, Katsutoshi; Kubo, Yuma; Miura, Hiroki; Shishido, Tetsuya
Journal of the Japan Petroleum Institute, 2022, 65, 161-170. DOI: 10.1627/jpi.65.161
The autothermal reforming (ATR) of methanol was performed using the Cu/ZnO/Al2O3-based catalysts for the catalytic production of hydrogen. The Cu/ZnO/Al2O3 (CZA) catalyst exhibited a high hydrogen production rate during ATR even at a low external heating temperature of 100 °C. In the O2 on/off durability test, although the hydrogen production rate of CZA gradually decreased owing to copper aggregation, the Pd-doped Cu/ZnO/Al2O3 (Pd-CZA) catalyst maintained a high hydrogen production rate. The reduction temperature of copper in Pd-CZA was found to be significantly lower than that in CZA, indicating that the reduction of copper in Pd-CZA takes place more easily. Thus, the aggregation of copper during the O2 on/off durability test was remarkably suppressed due to the fact that the reduction of copper in Pd-CZA occurred at a lower temperature than in CZA. Moreover, the Pd-CZA catalyst was self-activated under ATR conditions without the requirement for reduction pretreatment using hydrogen.