钯催化丁腈气相加氢的支撑效应

Q1 Materials Science
Y. Hao, Xiaodong Wang, N. Perret, F. Cárdenas-Lizana, M. Keane
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引用次数: 12

摘要

摘要以体Pd为基准,研究了载体在Pd/Al2O3和Pd/C(平均Pd尺寸2.5 ~ 3.0 nm)上对丁腈气相加氢的作用。通过程序升温还原对催化剂的活化进行了监测,并通过H2和NH3化学吸附/程序升温解吸和电子显微镜(STEM/TEM)对金属和酸的功能进行了表征。随着时间的推移,丁腈加氢反应稳定,产生丁胺,与中间体丁二胺连续缩合生成二丁胺和三丁胺。钯可以发生缩合反应,但选择性受载体和钯/氧化铝反应的影响,生成二丁胺为主要产物。在Pd/C上观察到优先的叔胺形成,并归因于更大的表面酸度,有利于缩合步骤。增加的氢气溢出和酸度(与Pd/C相关)提高了丁腈消耗率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Support effects in the gas phase hydrogenation of butyronitrile over palladium
Abstract The role of the support in the gas phase hydrogenation of butyronitrile over Pd/Al2O3 and Pd/C (2.5–3.0 nm mean Pd size) has been studied, taking bulk Pd as benchmark. Catalyst activation by temperature programmed reduction was monitored and the metal and acid functions characterized by H2 and NH3 chemisorption/temperature programmed desorption and electron microscopy (STEM/TEM). Butyronitrile hydrogenation was stable with time on-stream to deliver butylamine where consecutive condensation with the intermediate butylidenimine generated dibutylamine and tributylamine. Condensation can occur on bulk Pd but selectivity is influenced by the support and reaction over Pd/Al2O3 generated dibutylamine as principal product. Preferential tertiary amine formation was observed over Pd/C and attributed to greater surface acidity that favors the condensation step. Increased hydrogen spillover and acidity (associated with Pd/C) elevated butyronitrile consumption rate.
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来源期刊
Catalysis Structure & Reactivity
Catalysis Structure & Reactivity CHEMISTRY, PHYSICAL-
CiteScore
4.80
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