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Platinum, palladium and nickel supported on Fe3O4 as catalysts for glycerol aqueous-phase hydrogenolysis and reforming

机译:Fe3O4支持铂,钯和镍作为甘油水相氢解和重整的催化剂

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Aqueous-phase hydrogenolysis (APH) and reforming (APR) are intertwined reactions with great interest for biomass valorization, as APR generates hydrogen in situ at preferred APH reaction conditions instead of using external sources. We investigated iron oxide-supported Pt, Pd and Ni as catalysts for these reactions using glycerol as starting material. Catalysts were characterized by ICP, N2 physisorption, H2 chemisorption, XRD, TPR, CO2-TPD, FTIR of pyridine adsorption, XPS and TEM. The catalyst tests were performed in an autoclave extended with an in situ pre-reduction setup. Hydrogen spillover was found from hydrogen chemisorption of Pt catalysts, and after the development of a custom-made methodology, the Pt particle size was found to be 1.8 nm for the 2.5Pt/Fe3O4 catalyst, which agrees with TEM analysis (1.56 nm). Both for hydrogenolysis and APR, the activity order was Pt > Pd > Ni, directly related to the stability of reduced small nanoparticles, which has an impact on acid-base properties of the support. Pt showed the best performance in hydrogenolysis even at a low content (81% conversion, 79% 1,2-propanediol selectivity for 1.0Pt/Fe3O4). The 2.5Pd/Fe3O4 catalyst showed the highest hydrogen yield in APR (69.2% at 513 K and 78.9% conversion). First order kinetic fits were made for 2.5Pt/Fe3O4, from which an apparent activation energy of 61.1 kJ mol(-1) was obtained and an initial turnover frequency (TOF0) of 0.121 s(-1).
机译:水相氢解(APH)和重整(APR)与生物质载物的极大兴趣是相交的反应,因为APR在优选的APH反应条件下原位产生氢,而不是使用外部来源。我们将使用甘油作为原料的这些反应的催化剂调查了氧化铁支持的Pt,Pd和Ni。催化剂的特征在于ICP,N2理由,H2化学吸附,XRD,TPR,CO2-TPD,吡啶吸附,XPS和TEM的FTIR。催化剂试验在用原位预析设置中延伸的高压釜中进行。从Pt催化剂的氢化学吸附中发现了氢溢出,并且在制造定制方法后,对于2.5pt / Fe3O4催化剂,发现Pt粒径为1.8nm,这与TEM分析(1.56nm)一致。对于氢解和APR,活性顺序为Pt> Pd> Ni,与减少的小纳米颗粒的稳定性直接相关,这对载体的酸碱性能产生了影响。 PT表明,即使在低含量(81%转化,79%1,2-丙二醇选择性为1.0pt / Fe 3 O 4),也表明氢解的最佳性能。 2.5PD / Fe3O4催化剂在APR中显示出最高的氢屈服(513 k和78.9%转化率为69.2%)。第一阶动力学拟合为2.5pt / Fe3O4,获得61.1kJ摩尔(-1)的表观活化能量,初始周转频率(TOF0)为0.121 s(-1)。

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