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Production of HMF and DMF biofuel from carbohydrates through catalytic pathways as a sustainable strategy for the future energy sector

  • Huu Son Le
  • , Zafar Said
  • , Minh Tuan Pham
  • , Tri Hieu Le
  • , Ibham Veza
  • , Van Nhanh Nguyen
  • , Balakrishnan Deepanraj
  • , Lan Huong Nguyen

Research output: Contribution to journalArticlepeer-review

Abstract

In recent years, green energy sources have been proposed as alternatives for fossil fuels to meet energy demand while minimizing environmental pollution and global climate change. In this context, agricultural residues can be catalytically converted into furan derivatives. Among furan-based compounds, 5-hydroxymethylfurfural (HMF) and 2,5-dimethylfuran (DMF) are the valuable chemicals that can be converted into desired materials, including fuels. This review article discusses various catalytic HMF and DMF production pathways and the influence of feedstocks, catalysts, solvents, and hydrogen donors on the process yield. Additionally, reaction temperature and H2 pressure effects on the feedstock conversion and HMF and DMF production yields are also presented. The primary attention has been devoted to the literature published in the last five years. However, additional relevant examples have also been discussed to clarify the topic further where necessary. This review aims at providing state-to-the-art information on the current developmental state of DMF and HMF production for researchers in this field.

Original languageEnglish
Article number124474
JournalFuel
Volume324
DOIs
Publication statusPublished - Sept 15 2022
Externally publishedYes

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 12 - Responsible Consumption and Production
    SDG 12 Responsible Consumption and Production
  2. SDG 13 - Climate Action
    SDG 13 Climate Action

Keywords

  • 2,5-dimethylfuran
  • 5-hydroxymethylfurfural
  • Carbohydrates
  • Catalytic synthesis
  • Furan
  • Valuable chemicals

ASJC Scopus subject areas

  • General Chemical Engineering
  • Fuel Technology
  • Energy Engineering and Power Technology
  • Organic Chemistry

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