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富含铂的铂镍合金表面及其在纤维素水解加氢中的优异催化性能。

The Pt-enriched PtNi alloy surface and its excellent catalytic performance in hydrolytic hydrogenation of cellulose.

作者信息

Liang Guanfeng, He Limin, Arai Masahiko, Zhao Fengyu

机构信息

State Key Laboratory of Electroanalytical Chemistry, Laboratory of Green Chemistry and Process, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences Changchun 130022 (PR China), Fax: (+86) 431-85262410.

出版信息

ChemSusChem. 2014 May;7(5):1415-21. doi: 10.1002/cssc.201301204. Epub 2014 Mar 24.

Abstract

Ni-based catalysts are currently a subject of intense research in the hydrolytic hydrogenation of cellulose. We previously reported that Ni/ZSM-5 catalyst gave high yield of hexitols. However, Ni-based catalysts suffered fast deactivation in hot-compressed water. In this follow-up study we designed highly active Ni-based bimetallic catalysts with excellent hydrothermal stability for the hydrolytic hydrogenation of microcrystalline cellulose. PtNi/ZSM-5 shows a 76.9 % yield of hexitols, which is the best obtained so far in the hydrolytic hydrogenation of microcrystalline cellulose over Ni-based catalysts. Furthermore, the yield of hexitols remained greater than 55 % after the catalyst was reused for 4 times. The results showed that PtNi nanoparticles were formed with a Pt-enriched alloy surface as confirmed by XRD, H2-TPR (temperature-programmed H2 reduction), XPS (X-ray photoelectron spectroscopy), and H2-TPD (temperature-programmed H2 desorption). The surface features of these nano-particles were characterized by CO-TPD (temperature-programmed CO desorption), CO-FTIR (CO adsorption FTIR spectroscopy), HRTEM (high resolution TEM), and O2-TPO (temperature programmed oxidation) and this special surface structure may be responsible for the high activity, selectivity, and stability in the hydrolytic hydrogenation of cellulose in hot-compressed water.

摘要

镍基催化剂目前是纤维素水解加氢领域的研究热点。我们之前报道过,Ni/ZSM-5催化剂能实现己糖醇的高产率。然而,镍基催化剂在热压缩水中会快速失活。在这项后续研究中,我们设计了具有优异水热稳定性的高活性镍基双金属催化剂用于微晶纤维素的水解加氢。PtNi/ZSM-5的己糖醇产率为76.9%,这是目前镍基催化剂用于微晶纤维素水解加氢所获得的最佳产率。此外,该催化剂重复使用4次后,己糖醇产率仍大于55%。结果表明,通过XRD、H2-TPR(程序升温H2还原)、XPS(X射线光电子能谱)和H2-TPD(程序升温H2脱附)证实形成了表面富含Pt的PtNi纳米颗粒。通过CO-TPD(程序升温CO脱附)、CO-FTIR(CO吸附FTIR光谱)、HRTEM(高分辨率TEM)和O2-TPO(程序升温氧化)对这些纳米颗粒的表面特征进行了表征,这种特殊的表面结构可能是其在热压缩水中纤维素水解加氢过程中具有高活性、选择性和稳定性的原因。

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