4.7 Article

Efficient production of levulinic acid using metal-organic framework catalyst: Role of bronsted acid and flexibility

期刊

CHEMICAL ENGINEERING JOURNAL
卷 444, 期 -, 页码 -

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.cej.2022.136566

关键词

Metal-organic frameworks (MOFs); Biomass; Levulinic acid; Bronsted acid; Alkyl spacer

资金

  1. Korea Environment Industry & Technology Institute (KEITI) - Korea Ministry of Environment (MOE) [2021002800005]
  2. Korea Institute of Science and Technology (KIST)

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In recent years, alternative commodity production utilizing biomass has attracted significant interest. In this study, the catalytic activity for levulinic acid production from glucose was investigated using UiO-66 impregnated with various types of Bronsted acid groups. The effect of alkyl spacer and Bronsted acid group in biomass conversion was first discovered using MOF.
Alternative commodity production utilizing biomass has attracted significant interest in recent decades. The conversion of glucose into valuable products has been highly researched owing to its abundance, price competitiveness, and carbon-neutral cycle. In this study, various types of Bronsted acid groups, according to their pKa values and specific alkyl spacers, were impregnated into UiO-66, and the catalytic activity for levulinic acid (LA) production from glucose was investigated. Moreover, by controlling the reaction temperature, we demonstrated that the UiO-66-NH-R-SO3H catalyst with the strongest Bronsted acid and desired alkyl spacer can produce LA in a 71.6% yield. To the best of our knowledge, the effect of an alkyl spacer and a Bronsted acid group using MOF was first discovered for biomass conversion.

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