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1)  H2 production from methanol reforming
甲醇重整制氢
2)  oxidative steam reforming of methanol
甲醇氧化重整制氢
1.
The oxidative steam reforming of methanol (OSRM)is one of the most promising routes for the hydrogen production frommethanol considering the low reaction temperature, the acceptable hydrogenyield and the possibility to eliminate CO due to the present of H_2O.
本文采用络合-燃烧技术制备了新型Ce-Cu-O 固溶体催化剂,并对催化剂的结构进行了详细的表征,研究了其氧化还原能力对甲醇氧化重整制氢反应性能的影响。
3)  methanol steam reforming to produce hydrogen
甲醇蒸汽重整制氢
1.
A new approach was presented for combining the medium-and-low temperature waste heat in sintered gas with methanol steam reforming to produce hydrogen.
提出了烧结机烟气中低温废热与甲醇蒸汽重整制氢整合的新方法,模拟建立了中低温废热结合甲醇重整制氢的系统。
4)  hydrogen production from methanol steam reforming
甲醇水蒸汽重整制氢
1.
The influences of NiO loading and calcination temperature on the catalytic activity of Au/TiO2 catalysts for the hydrogen production from methanol steam reforming were studied.
研究表明:助剂NiO的加入可以明显提高Au—NiO/TiO2催化甲醇水蒸汽重整制氢的活性;Au与NiO的配比存在最佳值,当Au负载量(质量分数)为2%,Au与NiO的质量比为1∶5时,催化效果最佳;2%Au—10%NiO/TiO2催化剂的催化活性随焙烧温度的升高而降低。
5)  hydrogen from ethanol reforming
乙醇重整制氢
6)  Steam reforming of methanol
甲醇重整
1.
γ-Al2O3 supported size controlled platinum nanoparticle catalysts synthesized by reduction of H2PtCl6 solution with nitromethane at room temperature have been investigated for steam reforming of methanol as a reaction probe.
利用硝基甲烷还原法在室温条件下得到了纳米Pt粒径可控的担载Pt/γ-Al2O3催化剂,并利用甲醇重整反应为反应探针考察了Pt粒径与催化反应性能之间的关系,发现催化反应的性能与担载贵金属颗粒粒径之间存在明显的相关性。
补充资料:临氢重整
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性质:在氢的压力下进行的催化重整。主要是脂肪烃经脱氢和芳构化等反应而生成芳香烃。可由低辛烷值的直馏汽油、粗汽油或重汽油馏分等制得高辛烷值汽油,或由某些石油馏分制得苯、甲苯和二甲苯等芳香烃。

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