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首页> 外文期刊>Catalysis Today >Structure/activity relationships applied to the hydrogenation of alpha,beta-unsaturated carbonyls: The hydrogenation of 3-butyne-2-one over alumina-supported palladium catalysts
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Structure/activity relationships applied to the hydrogenation of alpha,beta-unsaturated carbonyls: The hydrogenation of 3-butyne-2-one over alumina-supported palladium catalysts

机译:适用于α,β-不饱和羰基氢化的结构/活性关系:在氧化铝支持的钯催化剂上氢化3-丁炔-2-一体化

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摘要

The gas phase hydrogenation of 3-butyne-2-one, an alkynic ketone, over two alumina-supported palladium catalysts is investigated using infrared spectroscopy in a batch reactor at 373 K. The mean particle size of the palladium crystallites of the two catalysts are comparable (2.4 +/- 0.1 nm). One catalyst (Pd(NO3)(2)/Al2O3) is prepared from a palladium(II) nitrate precursor, whereas the other catalyst (PdCl2/Al2O3) is prepared using palladium(II) chloride as the Pd precursor compound. A three-stage sequential process is observed with the Pd(NO3)(2)/Al2O3 catalyst facilitating complete reduction all the way through to 2-butanol. However, hydrogenation stops at 2-butanone with the PdCl2/Al2O3 catalyst. The inability of the PdCl2/Al2O3 catalyst to reduce 2-butanone is attributed to the inaccessibility of edge sites on this catalyst, which are blocked by chlorine retention originating from the catalyst's preparative process. The reaction profiles observed for the hydrogenation of this alkynic ketone are consistent with the site-selective chemistry recently reported for the hydrogenation of crotonaldehyde, an alkenic aldehyde, over the same two catalysts. Thus, it is suggested that a previously postulated structure/activity relationship may be generic for the hydrogenation of a,(3-unsaturated carbonyl compounds over supported Pd catalysts. (C) 2016 The Authors. Published by Elsevier B.V.
机译:使用红外光谱法在373k中在分批反应器中在两种氧化铝负载的钯催化剂中研究了3-丁炔-2-一体的气相氢化。在373k的批量反应器中,在批量反应器中进行三种氧化铝负载的钯催化剂。两种催化剂的钯微晶的平均粒度是可比(2.4 +/- 0.1 nm)。一种催化剂(Pd(No3)(2)/ Al 2 O 3)由钯(II)硝酸盐前体制成,而另一种催化剂(PdCl2 / Al 2 O 3)由氯化钯(II)作为Pd前体化合物制备。用Pd(NO 3)(2)/ Al 2 O 3催化剂观察到三阶段顺序过程,促进完全减少到2-丁醇。然而,用PdCl 2 / Al 2 O 3催化剂在2-丁酮中氢化停止。 PdCl2 / Al 2 O 3催化剂的不能降低2-丁酮的不能归因于该催化剂上的边缘位点的不良,该催化剂被源自催化剂的制备方法的氯保留阻断。所观察到该代样商语酮的氢化的反应曲线与最近据报道的位点选择性化学均载于相同的两种催化剂上的位点 - 选择性化学。因此,建议先前假设的结构/活性关系可以是氢化A的氢化,(3-不饱和羰基化合物在负载的Pd催化剂上。(c)2016作者。由elsevier b.v出版。

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