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Evidence of water dissociation and hydrogenation on molybdenum carbide nanocatalyst for hydroprocessing reactions

机译:Evidence of water dissociation and hydrogenation on molybdenum carbide nanocatalyst for hydroprocessing reactions

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Cubic molybdenum carbide, α-MoC1−x, was used for simultaneous water dissociation and hydrogenation reactions. Hydroprocessing reactions of heavy hydrocarbons under different hybrid environments consisting of water vapor, steam, and hydrogen at 623 K and 7 MPag were carried out and production of CO2 and olefins was closely followed to track the extent of water dissociation. Nitrogen, as an inert gas, systematically substituted either of the two gases to study the effect of partial pressure on the reaction products. In addition, water activation was verified by isotopically labelling O atoms in water, i.e. using H218O, and then production of heavier isotopes of CO2 was followed using mass spectrometry. Moreover, the potential effect of the co-presence of hydrogen on water dissociation was investigated by carrying out several flow reaction studies as well as adsorption studies using thermogravimetry/calorimetry coupled with mass spectrometry. While α-MoC1−x showed outstanding activity and stability for simultaneous water dissociation and hydrogenation, water activation was found to be partially hindered by the co-presence of hydrogen.
机译:立方碳化钼,α-MoC1−x,用于同时水分离和加氢反应。碳氢化合物在不同的混合环境中组成的水蒸气,蒸汽和氢气623 K和7 MPag和生产二氧化碳和烯烃是密切关注跟踪水分离的程度。惰性气体系统替换的两种气体研究部分的影响压力反应的产品。水激活被isotopically验证标签O原子在水中,即使用H218O,然后重同位素的生产的二氧化碳随后使用质谱。氢的co-presence的潜在影响水分离了开展一些流反应研究吸附研究使用热重量分析法/量热法加上质量谱分析。同时水活动与稳定离解和加氢、水激活发现部分阻碍了吗co-presence的氢。

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