Matches in SemOpenAlex for { <https://semopenalex.org/work/W4200012331> ?p ?o ?g. }
- W4200012331 endingPage "487" @default.
- W4200012331 startingPage "480" @default.
- W4200012331 abstract "2,5-Furandimethanol (FDM) is currently produced via a two-step process involving fructose dehydration over inorganic acids (H2SO4 and HCl) and the subsequent hydrogenation of 5-hydroxymethylfurfural (HMF) with H2. Because of the separation difficulty and unstable feature of HMF, the direct transformation of hexose to FDM is still challenging yet crucial. In this work, we first reported that formic acid served as both a renewable Bronsted acid and a hydrogen donor for one-pot dehydration–hydrogenation of fructose over a heterogeneous Co catalyst. Under optimal conditions of 170 °C for 3 h, 60.2% FDM yield was achieved with full conversion of fructose. Kinetic studies showed that the apparent activation energy (Ea) of the one-pot dehydration–hydrogenation of fructose was 80.5 kJ/mol and indicated that the rate-determining step of the whole process is fructose dehydration. The Co–NC catalyst was reusable and was also capable of gram-scale one-pot dehydration–hydrogenation of fructose." @default.
- W4200012331 created "2021-12-31" @default.
- W4200012331 creator A5038966132 @default.
- W4200012331 creator A5049981899 @default.
- W4200012331 creator A5072803247 @default.
- W4200012331 creator A5076672688 @default.
- W4200012331 creator A5079168003 @default.
- W4200012331 creator A5082389592 @default.
- W4200012331 date "2021-12-23" @default.
- W4200012331 modified "2023-10-13" @default.
- W4200012331 title "One-Pot Production of 2,5-Furandimethanol from Fructose Co-catalyzed with Formic Acid and Heterogeneous Co Catalysts" @default.
- W4200012331 cites W1898714164 @default.
- W4200012331 cites W1915961405 @default.
- W4200012331 cites W1941408356 @default.
- W4200012331 cites W1979894525 @default.
- W4200012331 cites W1984217602 @default.
- W4200012331 cites W2001739119 @default.
- W4200012331 cites W2010258180 @default.
- W4200012331 cites W2010781899 @default.
- W4200012331 cites W2024273877 @default.
- W4200012331 cites W2043232342 @default.
- W4200012331 cites W2047062989 @default.
- W4200012331 cites W2047991913 @default.
- W4200012331 cites W2057218984 @default.
- W4200012331 cites W2071592915 @default.
- W4200012331 cites W2102812055 @default.
- W4200012331 cites W2136573290 @default.
- W4200012331 cites W2177367593 @default.
- W4200012331 cites W2263137948 @default.
- W4200012331 cites W2275538560 @default.
- W4200012331 cites W2317714985 @default.
- W4200012331 cites W2319668312 @default.
- W4200012331 cites W2463420066 @default.
- W4200012331 cites W2490063950 @default.
- W4200012331 cites W2515300872 @default.
- W4200012331 cites W2523651160 @default.
- W4200012331 cites W2524136868 @default.
- W4200012331 cites W2525327326 @default.
- W4200012331 cites W2531064296 @default.
- W4200012331 cites W2558003805 @default.
- W4200012331 cites W2581925154 @default.
- W4200012331 cites W2605077069 @default.
- W4200012331 cites W2613170467 @default.
- W4200012331 cites W2724827746 @default.
- W4200012331 cites W2753026926 @default.
- W4200012331 cites W2765779288 @default.
- W4200012331 cites W2769731674 @default.
- W4200012331 cites W2782538933 @default.
- W4200012331 cites W2783201494 @default.
- W4200012331 cites W2794310957 @default.
- W4200012331 cites W2804891760 @default.
- W4200012331 cites W2945740476 @default.
- W4200012331 cites W2975101543 @default.
- W4200012331 cites W2997607642 @default.
- W4200012331 cites W2999139011 @default.
- W4200012331 cites W3002360685 @default.
- W4200012331 cites W3005592181 @default.
- W4200012331 cites W3092891749 @default.
- W4200012331 cites W3096676923 @default.
- W4200012331 cites W3110734961 @default.
- W4200012331 cites W3118974234 @default.
- W4200012331 cites W3119902665 @default.
- W4200012331 cites W3121323369 @default.
- W4200012331 doi "https://doi.org/10.1021/acs.energyfuels.1c03421" @default.
- W4200012331 hasPublicationYear "2021" @default.
- W4200012331 type Work @default.
- W4200012331 citedByCount "3" @default.
- W4200012331 countsByYear W42000123312022 @default.
- W4200012331 countsByYear W42000123312023 @default.
- W4200012331 crossrefType "journal-article" @default.
- W4200012331 hasAuthorship W4200012331A5038966132 @default.
- W4200012331 hasAuthorship W4200012331A5049981899 @default.
- W4200012331 hasAuthorship W4200012331A5072803247 @default.
- W4200012331 hasAuthorship W4200012331A5076672688 @default.
- W4200012331 hasAuthorship W4200012331A5079168003 @default.
- W4200012331 hasAuthorship W4200012331A5082389592 @default.
- W4200012331 hasConcept C134121241 @default.
- W4200012331 hasConcept C161790260 @default.
- W4200012331 hasConcept C178790620 @default.
- W4200012331 hasConcept C179104552 @default.
- W4200012331 hasConcept C181199279 @default.
- W4200012331 hasConcept C185592680 @default.
- W4200012331 hasConcept C191897082 @default.
- W4200012331 hasConcept C192562407 @default.
- W4200012331 hasConcept C2776339268 @default.
- W4200012331 hasConcept C2776393687 @default.
- W4200012331 hasConcept C2776970464 @default.
- W4200012331 hasConcept C2777379063 @default.
- W4200012331 hasConcept C2778769901 @default.
- W4200012331 hasConcept C55493867 @default.
- W4200012331 hasConceptScore W4200012331C134121241 @default.
- W4200012331 hasConceptScore W4200012331C161790260 @default.
- W4200012331 hasConceptScore W4200012331C178790620 @default.
- W4200012331 hasConceptScore W4200012331C179104552 @default.
- W4200012331 hasConceptScore W4200012331C181199279 @default.
- W4200012331 hasConceptScore W4200012331C185592680 @default.
- W4200012331 hasConceptScore W4200012331C191897082 @default.
- W4200012331 hasConceptScore W4200012331C192562407 @default.