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Highly dispersed Pd nanoparticles in situ reduced and stabilized by nitrogen-alkali lignin-doped phenolic nanospheres and their application in vanillin hydrodeoxygenation
DOI:10.1007/s11705-024-2478-1.png)
Abstract
En 中文
Herein, we introduced a nitrogen-alkali lignin-doped phenolic resin (N@AL(n)PR) to produce palladium nanoparticles through an in situ reduction of palladium in an aqueous phase, without the need for additional reagents or a reducing atmosphere. The phenolic resin nanospheres and the resulting palladium nanoparticles were extensively characterized. Alkali lignin created a highly conducive environment for nitrogen incorporation, dispersion, reduction, and stabilization of palladium, leading to a distinct catalytic performance of palladium nanoparticles in vanillin hydrodeoxygenation. Under specific conditions of 1 mmol of vanillin, 40 mg of catalyst, 1 MPa H-2, 90 degrees C, and 3 h, the optimized Pd/N@AL(30)PR catalyst exhibited a nearly complete conversion of vanillin, 98.9% selectivity toward p-creosol, and good stability for multiple reuses. Consequently, an environmentally friendly lignin-based catalyst was developed and used for the efficient hydrodeoxygenation conversion of lignin-based platform compounds.
Keywords:
alkali lignin
phenolic nanosphere
palladium nanoparticles
hydrodeoxygenation
vanillin
Journal
IF:
4.5
Papers:
1.3K
Citations:
3.7K
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