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Development of Cu-based Spinel Catalyst for Steam Reforming of Dimethyl Ether for Hydrogen Production

机译:用于二甲醚蒸汽重整制氢的铜基尖晶石催化剂的开发

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摘要

This work focused on the Cu-based spinel type oxide catalysts for the steam reforming of dimethyl ether (DME SR) reactions. Among Cu-based spinel-oxides, CuFe_2O_4 spinel and γ-Al_2O_3 composite catalyst exhibited the highest activity for DME SR. Reduction behavior, crystal property, and Cu oxidation state of spinel catalysts were strongly affected by B metal elements. The heat treatment temperature range of 700-800℃ is most effective to enhance the catalytic performance due to the new phase of Cu-Fe-AlO_4 formation by solid-state reaction at the interface between CuFe_2O_4 and γ-Al_2O_3. No degradation could be observed for the catalyst subjected to the cooling-heating process in O_2 atmosphere which is assumed the daily start-up and shut-down (DSS) operation. The degraded catalyst after the DSS operation in steam could be recovered by the heat treatment in air at 375℃, because the active sites of γ-Al_2O_3 were regenerated and the coke deposits were removed.
机译:这项工作集中在用于二甲醚(DME SR)反应的蒸汽重整的铜基尖晶石型氧化物催化剂上。在Cu基尖晶石氧化物中,CuFe_2O_4尖晶石和γ-Al_2O_3复合催化剂对DME SR表现出最高的活性。尖晶石催化剂的还原行为,晶体性质和Cu氧化态受B金属元素的强烈影响。 700-800℃的热处理温度最有效地提高了催化性能,这是由于在CuFe_2O_4与γ-Al_2O_3之间的界面上通过固相反应形成了Cu-Fe-AlO_4的新相。对于假设在每天启动和关闭(DSS)操作的O_2气氛中进行冷却-加热过程的催化剂,未观察到降解。通过在375℃的空气中进行热处理,可以使在蒸汽中进行DSS操作后降解的催化剂得以回收,这是因为γ-Al_2O_3的活性部位得以再生,并且除去了积炭。

著录项

  • 作者

    霜田 直宏;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 JPN
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