Glycerol Selective Oxidation to Lactic Acid over AuPt Nanoparticles; Enhancing Reaction Selectivity and Understanding by Support Modification

被引:29
作者
Douthwaite, Mark [1 ]
Powell, Natasha [1 ]
Taylor, Aoife [1 ]
Ford, Grayson [1 ]
Lopez, Jose Manuel [2 ]
Solsona, Benjamin [3 ]
Yang, Nating [1 ]
Sanahuja-Parejo, Olga [2 ]
He, Qian [1 ]
Morgan, David J. [1 ]
Garcia, Tomas [2 ]
Taylor, Stuart H. [1 ]
机构
[1] Cardiff Univ, Cardiff Catalysis Inst, Sch Chem, Main Bldg,Pk Pl, Cardiff CF10 3AT, Wales
[2] CSIC, Inst Carboquim ICB, Zaragoza 50018, Spain
[3] Univ Valencia, Dept Engn Quim, ETSE, Ave Univ, E-46100 Valencia, Spain
关键词
Aerobic Oxidation; Dehydration; Glycerol; Nanocasting; Lactic Acid; LIQUID-PHASE OXIDATION; ONE-POT CONVERSION; CATALYTIC CONVERSION; GOLD CATALYSTS; PARTICLE-SIZE; BASE-FREE; CARBON; PD; TITANIA; SILICA;
D O I
10.1002/cctc.202000026
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
A high surface area mesoporous TiO2 material (110m(2)/g) was synthesised using a nanocasting methodology, utilizing SBA-15 as a hard template. This material was subsequently used as a support to prepare a series of 1wt.% AuPt/TiO2 catalysts, synthesised by conventional impregnation and sol-immobilisation. Catalysts were tested for the oxidation of glycerol to lactic acid and their performance was compared with corresponding catalysts supported on TiO2-P25, TiO2-anatase and TiO2-rutile. Higher rates of reaction and higher selectivity to lactic acid were observed over nanocast TiO2 supported catalysts. The increased performance of these catalysts was attributed to the presence of Si on the surface of the support, which likely arose from inefficient etching of the SBA-15 template. The presence of Si in these catalysts was confirmed by X-ray photoelectron spectroscopy and electron energy loss spectroscopy. It was proposed that the residual Si present increases the BrOnsted acidity of the TiO2 support, which can lead to the formation of Lewis acid sites under reaction conditions; both sites are known to catalyse the dehydration of a primary alcohol in glycerol. Typically, under alkaline conditions, lactic acid is formed by the nucleophilic abstraction of a hydrogen. Thus, we propose that the improved selectivity to lactic acid over the nanocast TiO2 supported catalyst is attributed to the co-operation of heterogeneous and homogeneous dehydration reactions, as both compete directly with a direct oxidation pathway, which leads to the formation of oxidation products such as glyceric and tartronic acid.
引用
收藏
页码:3097 / 3107
页数:11
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