Matches in SemOpenAlex for { <https://semopenalex.org/work/W4214881411> ?p ?o ?g. }
- W4214881411 endingPage "355" @default.
- W4214881411 startingPage "347" @default.
- W4214881411 abstract "Zeolite-supported metal catalysts containing hydrogenation centers and acid sites are promising in the chemoselective hydrogenation of biomass platform molecules into value-added chemicals and fuels. The primary challenge of employing such bifunctional catalysts for biomass conversion lies in catalyst stability in the liquid phase under harsh conditions. Herein, we have prepared a Ni/La-Y nanocatalyst via an improved wet impregnation method. Compared with Ni nanoparticles on H-Y, La addition shows a significantly enhanced stability and performance in the continuous liquid-phase hydrogenation of γ-valerolactone (GVL) into ethyl pentanoate (EP) at 200 °C for 1000 h. Complementary characterization studies reveal that La addition in the metal/zeolite catalyst not only efficiently modulates the acid property of the zeolite to alleviate coke formation, but also suppresses zeolite dealumination and metal agglomeration and leaching upon catalysis over a 1000 h period. These findings provide an efficient approach for improving the stability of zeolite-supported bifunctional catalysts, leading to potential application in hydrogen-assisted biomass valorization under the liquid-phase conditions." @default.
- W4214881411 created "2022-03-05" @default.
- W4214881411 creator A5012119333 @default.
- W4214881411 creator A5016847702 @default.
- W4214881411 creator A5019153006 @default.
- W4214881411 creator A5021553377 @default.
- W4214881411 creator A5038030124 @default.
- W4214881411 creator A5040895512 @default.
- W4214881411 creator A5043371537 @default.
- W4214881411 creator A5045317640 @default.
- W4214881411 creator A5053453125 @default.
- W4214881411 creator A5084652193 @default.
- W4214881411 creator A5087592842 @default.
- W4214881411 date "2022-07-01" @default.
- W4214881411 modified "2023-10-10" @default.
- W4214881411 title "A durable Ni/La-Y catalyst for efficient hydrogenation of γ-valerolactone into pentanoic biofuels" @default.
- W4214881411 cites W1928263548 @default.
- W4214881411 cites W1965847090 @default.
- W4214881411 cites W1971144082 @default.
- W4214881411 cites W1974732512 @default.
- W4214881411 cites W1998321859 @default.
- W4214881411 cites W2014724250 @default.
- W4214881411 cites W2032833878 @default.
- W4214881411 cites W2056061112 @default.
- W4214881411 cites W2075626252 @default.
- W4214881411 cites W2079292015 @default.
- W4214881411 cites W2082698192 @default.
- W4214881411 cites W2089072035 @default.
- W4214881411 cites W2102318977 @default.
- W4214881411 cites W2120446525 @default.
- W4214881411 cites W2126452174 @default.
- W4214881411 cites W2138423053 @default.
- W4214881411 cites W2151863166 @default.
- W4214881411 cites W2159775165 @default.
- W4214881411 cites W2167898139 @default.
- W4214881411 cites W2262954927 @default.
- W4214881411 cites W2321015801 @default.
- W4214881411 cites W2330278132 @default.
- W4214881411 cites W2334328840 @default.
- W4214881411 cites W2395856397 @default.
- W4214881411 cites W2619098595 @default.
- W4214881411 cites W2741564563 @default.
- W4214881411 cites W2744245821 @default.
- W4214881411 cites W2768835448 @default.
- W4214881411 cites W2790636298 @default.
- W4214881411 cites W2792475814 @default.
- W4214881411 cites W2793510934 @default.
- W4214881411 cites W2848908709 @default.
- W4214881411 cites W2884817457 @default.
- W4214881411 cites W2901271709 @default.
- W4214881411 cites W2916344444 @default.
- W4214881411 cites W2947078687 @default.
- W4214881411 cites W2949029906 @default.
- W4214881411 cites W2972452375 @default.
- W4214881411 cites W2973344079 @default.
- W4214881411 cites W2982897264 @default.
- W4214881411 cites W2990164871 @default.
- W4214881411 cites W2991588249 @default.
- W4214881411 cites W2996230600 @default.
- W4214881411 cites W3005432375 @default.
- W4214881411 cites W3011754681 @default.
- W4214881411 cites W3037616213 @default.
- W4214881411 cites W3087755785 @default.
- W4214881411 cites W3091413007 @default.
- W4214881411 cites W3093104528 @default.
- W4214881411 cites W3153041417 @default.
- W4214881411 cites W3195713637 @default.
- W4214881411 cites W3196283951 @default.
- W4214881411 cites W3200161459 @default.
- W4214881411 cites W48428200 @default.
- W4214881411 doi "https://doi.org/10.1016/j.jechem.2022.02.011" @default.
- W4214881411 hasPublicationYear "2022" @default.
- W4214881411 type Work @default.
- W4214881411 citedByCount "13" @default.
- W4214881411 countsByYear W42148814112022 @default.
- W4214881411 countsByYear W42148814112023 @default.
- W4214881411 crossrefType "journal-article" @default.
- W4214881411 hasAuthorship W4214881411A5012119333 @default.
- W4214881411 hasAuthorship W4214881411A5016847702 @default.
- W4214881411 hasAuthorship W4214881411A5019153006 @default.
- W4214881411 hasAuthorship W4214881411A5021553377 @default.
- W4214881411 hasAuthorship W4214881411A5038030124 @default.
- W4214881411 hasAuthorship W4214881411A5040895512 @default.
- W4214881411 hasAuthorship W4214881411A5043371537 @default.
- W4214881411 hasAuthorship W4214881411A5045317640 @default.
- W4214881411 hasAuthorship W4214881411A5053453125 @default.
- W4214881411 hasAuthorship W4214881411A5084652193 @default.
- W4214881411 hasAuthorship W4214881411A5087592842 @default.
- W4214881411 hasConcept C111368507 @default.
- W4214881411 hasConcept C115540264 @default.
- W4214881411 hasConcept C127313418 @default.
- W4214881411 hasConcept C127413603 @default.
- W4214881411 hasConcept C159390177 @default.
- W4214881411 hasConcept C159750122 @default.
- W4214881411 hasConcept C161790260 @default.
- W4214881411 hasConcept C178790620 @default.
- W4214881411 hasConcept C185592680 @default.
- W4214881411 hasConcept C192562407 @default.