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Oxygen content as a variable to control product selectivity in hydrodeoxygenation reactions on molybdenum carbide catalysts

机译:氧气含量作为控制钼碳化物催化剂加氢脱氧反应中的产品选择性的变量

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摘要

Oxygen-treatment of as-synthesized molybdenum carbide at 296 K-423 K and subsequent temperature-programmed-surface-reaction with hydrogen was utilized to obtain oxygen-modified Mo2C (O:Mo-bulk = 0.002 for Fresh-Mo2C to O:Mo-bulk = 0.276 for Mo2C oxygen treated at 423 K) formulations. Benzene selectivity decreased from 97% at O:Mo-bulk = 0.002 to 18% at O:Mo-bulk = 0.276 while phenol selectivity concurrently increased from 0.2% at O:Mo-bulk = 0.002 to 81% at O:Mo-bulk = 0.276 in reactions of anisole/hydrogen mixtures at atmospheric pressure and 423 K showing that O* content can be used to tune the product selectivity in hydrodeoxygenation reactions on transition metal carbides. This change in selectivity can plausibly be ascribed to the formation of MoOx/MoOxCy species that disrupts ensembles required for selective aromatic C-O bond cleavage. (C) 2018 Elsevier Ltd. All rights reserved.
机译:利用在296k-423k和随后与氢的随后的温度编程 - 表面反应的氧化氧化氧处理,得到氧改性的Mo2C(O:Mo-Bulk = 0.002,用于新鲜MO2C至O:Mo -Bulk = 0.276用于在423 k)制剂中处理的MO2C氧。 苯的选择性在O:Mo-Bulk = 0.002至18%的o:Mo-Bulk = 0.276时从97%下降,而苯酚选择性在O:Mo-Bulk = 0.002至81%的0.2%上均为O:Mo-Bulk = 0.276在大气压下的苯吲哚/氢气混合物的反应中,表明O *含量可用于调节过渡金属碳化物上的加氢脱氧反应中的产品选择性。 这种选择性的这种变化可以合理地归因于形成MOOX / Mooxcy物种的形成,这些物种破坏选择性芳族C-O键裂解所需的合奏。 (c)2018年elestvier有限公司保留所有权利。

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