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调控催化途径:多功能催化剂上棕榈酸的脱氧反应。

Manipulating catalytic pathways: deoxygenation of palmitic acid on multifunctional catalysts.

机构信息

Department of Chemistry and Catalysis Research Centre, Technische Universität München, Lichtenbergstrasse 4, 85747 Garching, Germany.

出版信息

Chemistry. 2013 Apr 8;19(15):4732-41. doi: 10.1002/chem.201203110. Epub 2013 Mar 20.

Abstract

The mechanism of the catalytic reduction of palmitic acid to n-pentadecane at 260 °C in the presence of hydrogen over catalysts combining multiple functions has been explored. The reaction involves rate-determining reduction of the carboxylic group of palmitic acid to give hexadecanal, which is catalyzed either solely by Ni or synergistically by Ni and the ZrO2 support. The latter route involves adsorption of the carboxylic acid group at an oxygen vacancy of ZrO2 and abstraction of the α-H with elimination of O to produce the ketene, which is in turn hydrogenated to the aldehyde over Ni sites. The aldehyde is subsequently decarbonylated to n-pentadecane on Ni. The rate of deoxygenation of palmitic acid is higher on Ni/ZrO2 than that on Ni/SiO2 or Ni/Al2O3, but is slower than that on H-zeolite-supported Ni. As the partial pressure of H2 is decreased, the overall deoxygenation rate decreases. In the absence of H2, ketonization catalyzed by ZrO2 is the dominant reaction. Pd/C favors direct decarboxylation (-CO2), while Pt/C and Raney Ni catalyze the direct decarbonylation pathway (-CO). The rate of deoxygenation of palmitic acid (in units of mmol moltotal metal(-1) h(-1)) decreases in the sequence r(Pt black) ≈r(Pd black) >r(Raney Ni) in the absence of H2 . In situ IR spectroscopy unequivocally shows the presence of adsorbed ketene (C=C=O) on the surface of ZrO2 during the reaction with palmitic acid at 260 °C in the presence or absence of H2.

摘要

在 260°C 下,在氢气存在的条件下,通过组合多种功能的催化剂将棕榈酸催化还原为正十五烷的反应机理已经被探索。该反应涉及到棕榈酸的羧基的速率决定还原,生成十六醛,其可以被 Ni 单独催化,也可以被 Ni 和 ZrO2 载体协同催化。后一种途径涉及羧酸基团在 ZrO2 的氧空位上的吸附以及α-H 的抽取,并消除 O 生成烯酮,烯酮随后在 Ni 位上被加氢为醛。醛在 Ni 上进一步脱羰化为正十五烷。在 Ni/ZrO2 上棕榈酸的脱氧速率高于在 Ni/SiO2 或 Ni/Al2O3 上,但低于在 H-沸石负载 Ni 上。随着 H2 分压的降低,整体脱氧速率降低。在没有 H2 的情况下,ZrO2 催化的酮化是主要反应。Pd/C 有利于直接脱羧(-CO2),而 Pt/C 和 Raney Ni 催化直接脱羰(-CO)途径。在没有 H2 的情况下,棕榈酸的脱氧速率(以 mmol moltotal metal(-1) h(-1)为单位)的顺序为 r(Pt black) ≈r(Pd black) >r(Raney Ni)。原位红外光谱明确表明,在 260°C 下,在 H2 存在或不存在的情况下,与棕榈酸反应时,ZrO2 表面存在吸附的烯酮(C=C=O)。

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