open access publication

Article, 2023

On the role of Zr to facilitate the synthesis of diesel and jet fuel range intermediates from biomass-derived carbonyl compounds over aluminum phosphate

Applied Catalysis B Environmental, ISSN 1873-3883, 0926-3373, Volume 320, Page 121936, 10.1016/j.apcatb.2022.121936

Contributors

Fang, Wenting 0000-0002-6609-1182 [1] Liu, Sihang 0000-0002-6527-1667 [1] Schill, Leonhard [1] Kubus, Mariusz 0000-0002-1764-0376 [1] Bligaard, Thomas 0000-0003-0386-0201 [1] Riisager, Anders 0000-0002-7086-1143 (Corresponding author) [1]

Affiliations

  1. [1] Technical University of Denmark
  2. [NORA names: DTU Technical University of Denmark; University; Denmark; Europe, EU; Nordic; OECD]

Abstract

Heterogeneous zeolite/zeotype catalysts are attractive for converting renewable biomass-derived chemicals into transportation fuels by aldol condensation reactions, which provide a simple strategy to improve carbon numbers. Herein, Zr-doped aluminum phosphate (ZrAPO-5) were applied for efficient syntheses of diesel and jet fuel range C11, C12 and C16 intermediates from biomass-derived furfural (FF) and cyclohexanone (CH). Incorporation of Zr in the APO-5 framework facilitated the adsorption of the CO groups of FF and CH and created more and stronger acid and base sites, which co-catalyzed the aldol condensation and facilitated the product yields. ZrAPO-5 (Zr/Al = 0.20) yielded up to 79.3% single aldol condensation product C11 or 80.7% double aldol condensation product C16 in the cross-aldol condensation of FF and CH under appropriate reaction conditions, and also realized 83.3% C12 yield in the self-aldol condensation of CH. In addition, the catalytic system displayed good to excellent yields of other value-added chemicals in aldol condensations of alternative carbonyl compounds.

Keywords

C11, C12, C16, CO group, Zr, acid, adsorption, aldol, aldol condensation, aldol condensation reaction, aluminum, aluminum phosphate, appropriate reaction conditions, base, base sites, biomass-derived carbonyl compounds, biomass-derived chemicals, biomass-derived furfural, carbon number, carbonyl compounds, catalyst, catalytic system, chemical, co-catalyzed, compounds, condensation, condensation reaction, conditions, cross-aldol condensation, cyclohexanone, diesel, efficient synthesis, excellent yields, framework, fuel, furfural, groups of FF, incorporation, incorporation of Zr, intermediate, jet, number, phosphate, product yield, production, range intermediate, reaction, reaction conditions, self-aldol condensation, sites, strong acid, synthesis, system, transport, transportation fuels, yield

Funders

  • China Scholarship Council
  • The Velux Foundations

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