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Article Abstract

Tungstate-zirconium oxide catalysts (WO/ZrO) with much higher concentrations of Brønsted acid sites (BAS) and a bigger ratio of Brønsted to Lewis acid sites (B/L) than achievable by conventional impregnation (IM) were synthesized using single-step flame spray pyrolysis (FSP). The rapid quenching and short residence time inherent to FSP prevent the accumulation of W atoms on the ZrO support and thus provide an excellent surface dispersion of WO species. As a result, FSP-made WO/ZrO (FSP-WO/ZrO) has a much higher surface concentration of three-dimensional Zr-WO clusters than corresponding materials prepared by conventional impregnation (IM-WO/ZrO). The coordination of W-OH to the unsaturated Zr sites in these clusters results in a remarkable decrease of the concentration of Lewis acid sites (LAS) on the surface of ZrO and promotes the formation of bridging W-O(H)-Zr hydroxyl groups acting as BAS. FSP-WO/ZrO possesses ~80 % of BAS and a B/L ratio of around 4, while IM-WO/ZrO exhibits ~50 % BAS and a B/L ratio of around 1. These catalysts were evaluated in the dehydration of glucose to 5-hydroxylmethylfurfural (HMF). The catalytic study demonstrated that the B/L ratio plays a crucial role in glucose conversion, virtually independent of the total acidity of the catalysts. The best catalyst, FSP-WO/ZrO with a W/Zr ratio of 1/10 affords nearly 100 % glucose conversion and an HMF selectivity of 56-69 %, comparable to some homogenous catalysts.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11696201PMC
http://dx.doi.org/10.1002/cssc.202400128DOI Listing

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