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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Active site isolation in bismuth-poisoned Pd/SiO2 catalysts for selective hydrogenation of furfural
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Active site isolation in bismuth-poisoned Pd/SiO2 catalysts for selective hydrogenation of furfural

机译:铋中毒Pd / SiO2催化剂中的活性位点分离,用于糠醛的选择性氢化

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Active site isolation in furfural (FA) hydrogenation was studied by poisoning a Pd catalyst with bismuth. A solution of FA in water was hydrogenated over a 5 wt% Pd/SiO2 catalyst in a batch reactor at various reaction temperatures and pressures. Furfuryl alcohol (FAL) was an intermediate product which was further hydrogenated into tetrahydrofurfuryl alcohol (TFAL) or cyclopentanone (CPA) and cyclopentanol (CPOL). While application of hydrogen pressure above 30 bar had little effect on the hydrogenation kinetics, a reaction temperature affected product distribution and the main product changed from TFAL (at 50 degrees C) to FAL (100 and 150 degrees C). Poisoning the catalyst with Bi decreased the number of available active sites but had little effect on the turn-over frequencies, most likely because of the absence of electronic effects of Bi on Pd nanoparticles. The main reaction product over the Bi-poisoned catalyst was FAL with no FA oligomerisation products. At a reaction temperature of 150 degrees C, CPA was formed with a 57% yield. Considering that Bi preferentially poisons step sites of Pd, the comparison of the product distribution between the Pd and Pd-Bi catalyst as well as the literature data for the alloy Pd-Cu catalysts indicates that the active site isolation observed in the Pd-Bi catalysts is responsible for the increasing FAL and CPA selectivities and elimination of oligomer by-products.
机译:通过用铋中毒,研究了糠醛(Fa)氢化的活性位点分离。在各种反应温度和压力下,在分批反应器中氢化Fa水中的溶液在5wt%pd / siO 2催化剂上氢化。糠醇(FAL)是一种中间产物,其进一步氢化成四氢呋喃醇(TFAL)或环戊酮(CPA)和环戊醇(CPOL)。虽然在30巴以上的氢气压力的施加对氢化动力学产生影响时,反应温度影响的产物分布和主要产物从TFAL(50℃)变为FAL(100和150℃)。用BI中毒催化剂降低了可用活性位点的数量,但对转过频率几乎没有影响,最有可能因为没有BI的PD纳米颗粒上的电子效应。双中毒催化剂上的主要反应产物是没有FA寡聚产物的FAL。在150℃的反应温度下,CPA形成为57%收率。考虑到PD的PD的BI优先毒性步骤,Pd和Pd-Bi催化剂之间的产品分布以及合金Pd-Cu催化剂的文献数据表明在PD-BI催化剂中观察到的活性位点分离负责不断增加的法利和CPA选择性和消除低聚物副产物。

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