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Shape-selective Valorization of Biomass-derived Glycolaldehyde using Tin-containing Zeolites. | LitMetric

Shape-selective Valorization of Biomass-derived Glycolaldehyde using Tin-containing Zeolites.

ChemSusChem

New Business R&D, Haldor Topsøe A/S, Haldor Topsøes Allé 1, 2800-, Kgs. Lyngby, Denmark.

Published: November 2016

A highly selective self-condensation of glycolaldehyde to different C molecules has been achieved using Lewis acidic stannosilicate catalysts in water at moderate temperatures (40-100 °C). The medium-sized zeolite pores (10-membered ring framework) in Sn-MFI facilitate the formation of tetrose sugars while hindering consecutive aldol reactions leading to hexose sugars. High yields of tetrose sugars (74 %) with minor amounts of vinyl glycolic acid (VGA), an α-hydroxyacid, are obtained using Sn-MFI with selectivities towards C products reaching 97 %. Tin catalysts having large pores or no pore structure (Sn-Beta, Sn-MCM-41, Sn-SBA-15, tin chloride) led to lower selectivities for C sugars due to formation of hexose sugars. In the case of Sn-Beta, VGA is the main product (30 %), illustrating differences in selectivity of the Sn sites in the different frameworks. Under optimized conditions, GA can undergo further conversion, leading to yields of up to 44 % of VGA using Sn-MFI in water. The use of Sn-MFI offers multiple possibilities for valorization of biomass-derived GA in water under mild conditions selectively producing C molecules.

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Source
http://dx.doi.org/10.1002/cssc.201600757DOI Listing

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