Enhanced Lithium Adsorption on an Anion- and Cation-Codoped Lithium Manganese Oxide Ion Sieve with a Thin Fluoride-Protective Coating Layer
关键字:SINGLE-ATOM; CATALYSTS; ALCOHOLS; CELLULOSE; METAL; HYDROGENOLYSIS; GLYCEROL; PROGRESS; BIOFUEL; WOX
摘要:Metal-metal oxide catalysts are robust in selective hydrodeoxygenation of biomass derives. Herein, 1-hexanol in total yield about 76 % is firstly achieved by high selective hydrodeoxygenation of 5-hydroxymethylfurfural over Ni/MCM-41 and Pt-WO X /t-ZrO 2 . By controlling the amount ratio of Ni/Ni 2 + to 0.46, a 99.9 % yield of 2,5-tetrahydrofurandimethanol was achieved from 5-hydroxymethylfurfural by Ni/MCM-41. Subsequently high yield of 76 % of 1-hexanol was obtained by competing pathways of tandem reactions beginning at SN2 reaction at the epoxy atom of 2,5-tetrahydrofurandimethanol to enol/tautomer intermediates and ending with controllable selective hydrogenation. The reaction mechanism is explored and the reaction-oriented regulation is realized by the additional strong Br <spacing diaeresis> Onsted acid sites generated by electron transfer from W to Pt and the appropriate amount of Pt 0 sites of Pt-WO X /t-ZrO 2 , where the ratios of W 5 + /W 6 + and Pt 0 /Pt 2 + are 0.31 and 4.58 respectively. This work provides a new and green method for the synthesis of 1-hexanol and expands the utilization of metal -metal oxide in making value-added products using sustainable feedstocks.
卷号:487
期号:
是否译文:否