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首页> 外文期刊>RSC Advances >Paving the way towards green catalytic materials for green fuels: impact of chemical species on Mo-based catalysts for hydrodeoxygenation
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Paving the way towards green catalytic materials for green fuels: impact of chemical species on Mo-based catalysts for hydrodeoxygenation

机译:为绿色燃料的绿色催化材料铺平道路:化学物质对加氢脱氧钼基催化剂的影响

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A series of Mo-based catalysts were synthesized by tuning the sulfidation temperature to produce mixtures of MoO _(3) and MoS _(2) as active phases for the hydrodeoxygenation (HDO) of palmitic acid. Differences in the oxidation states of Mo, and the chemical species present in the catalytic materials were determined by spectroscopic techniques. Palmitic acid was used as a fatty-acid model compound to test the performance of these catalysts. The catalytic performance was related to different chemical species formed within the materials. Sulfidation of these otherwise inactive catalysts significantly increased their performance. The catalytic activity remains optimal between the sulfidation temperatures of 100 °C and 200 °C, whereas the most active catalyst was obtained at 200 °C. The catalytic performance decreased significantly at 400 °C due to a higher proportion of sulfides formed in the materials. Furthermore, the relative proportion of MoO _(3) to MoS _(2) is essential to form highly active materials to produce O-free hydrocarbons from biomass feedstock. The transition from MoS _(2) to MoO _(3) reveals the importance of Mo–S and Mo–O catalytically active species needed for the HDO process and hence for biomass transformation. We conclude that transitioning from MoS _(2) to MoO _(3) catalysts is a step in the right direction to produce green fuels.
机译:通过调节硫化温度,合成了一系列Mo基催化剂,以生成MoO_(3)和MoS_(2)的混合物作为棕榈酸加氢脱氧(HDO)的活性相。 Mo的氧化态和催化材料中存在的化学物种的差异通过光谱技术确定。棕榈酸用作脂肪酸模型化合物,以测试这些催化剂的性能。催化性能与材料内形成的不同化学物种有关。这些原本无活性的催化剂的硫化大大提高了它们的性能。在100°C和200°C的硫化温度之间,催化活性保持最佳状态,而在200°C时获得活性最高的催化剂。由于在材料中形成较高比例的硫化物,因此在400°C时催化性能显着下降。此外,MoO_(3)与MoS_(2)的相对比例对于形成高活性材料以从生物质原料生产不含O的烃至关重要。从MoS _(2)到MoO _(3)的转变揭示了HDO过程以及生物质转化所需的Mo–S和Mo–O催化活性物种的重要性。我们得出的结论是,从MoS _(2)过渡到MoO _(3)催化剂是朝着生产绿色燃料的正确方向迈出的一步。

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