Water-assisted preparation of Ni/La(OH)3 catalyst for efficient catalytic C-O bond hydrogenolysis of tetrahydrofuran-dimethanol
[Display omitted] •Water vapor inhibited dehydration of La(OH)3 to LaOOH during thermal reduction treatment.•The hydroxyl groups in La(OH)3 are important for metal dispersion and reaction selectivity.•High dispersion of metallic Ni and abundant Niδ+-O-La interfaces are obtained.•Total yields of HTO...
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Veröffentlicht in: | Journal of catalysis 2024-12, Vol.440, p.115790, Article 115790 |
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Sprache: | eng |
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•Water vapor inhibited dehydration of La(OH)3 to LaOOH during thermal reduction treatment.•The hydroxyl groups in La(OH)3 are important for metal dispersion and reaction selectivity.•High dispersion of metallic Ni and abundant Niδ+-O-La interfaces are obtained.•Total yields of HTO and HDO reached 96 % in C-O bond hydrogenolysis of THFDM.
Due to easy dehydration of La(OH)3 to LaOOH by thermal treatment, it is challenging to prepare highly efficient Ni/La(OH)3 catalyst for hydrogenolysis reactions. Herein, Ni/La(OH)3 (Ni/La-2) catalyst is prepared by thermal reduction of NiO/La(OH)3 in hydrogen flow with vaporized water, while La(OH)3 is partially dehydrated to LaOOH without water vapor affording Ni/(La(OH)3 + LaOOH) (Ni/La-1). Ni/La-2 displays 93 % and 3 % yields of 1,2,6-hexanetriol (HTO) and 1,6-hexanediol (HDO) respectively towards C-O hydrogenolysis of tetrahydrofuran-dimethanol (THFDM) in batch reactor and high stability (200 h) in fixed-bed reactor, which is the best among the reported catalysts to the best of our knowledge. Ni/La-2 possesses pure La(OH)3 as support, enhanced dispersion of Ni species and abundant Niδ+-O-La interfaces in comparison to Ni/La-1, which results in the exceptional catalytic performances in C-O hydrogenolysis of THFDM. A fine control of reaction temperature and time is required to optimize the yields HTO and HDO in hydrogenolysis of THFDM over Ni/La-2. The water-assisted preparation method provides a new perspective for the preparation of La(OH)3 supported metal catalysts. |
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ISSN: | 0021-9517 |
DOI: | 10.1016/j.jcat.2024.115790 |