Review

    Research on Deep Eutectic Solvents for Fuel Desulfurization: Methods, Mechanisms, and Emerging Trends
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    • Siqi Zhu
      Siqi Zhu
      Institute of Bismuth and Rhenium Science, School of Materials and Chemistry, University of Shanghai for Science and Technology, Shanghai 200093, China
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    • Sitong Jin
      Sitong Jin
      Institute of Bismuth and Rhenium Science, School of Materials and Chemistry, University of Shanghai for Science and Technology, Shanghai 200093, China
      More by Sitong Jin
    • Congfei Yao*
      Congfei Yao
      Institute of Bismuth and Rhenium Science, School of Materials and Chemistry, University of Shanghai for Science and Technology, Shanghai 200093, China
      GSK Carbon Neutral Laboratory, School of Chemistry, University of Nottingham, Nottingham NG7 2RD, U.K.
      *Email: [email protected]
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    • Jitong Xue
      Jitong Xue
      Institute of Bismuth and Rhenium Science, School of Materials and Chemistry, University of Shanghai for Science and Technology, Shanghai 200093, China
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    • Qiuyu Chen
      Qiuyu Chen
      Institute of Bismuth and Rhenium Science, School of Materials and Chemistry, University of Shanghai for Science and Technology, Shanghai 200093, China
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    • Zheng Liu
      Zheng Liu
      Institute of Bismuth and Rhenium Science, School of Materials and Chemistry, University of Shanghai for Science and Technology, Shanghai 200093, China
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    Journal of Chemical & Engineering Data

    Cite this: J. Chem. Eng. Data 2026, 71, 3, 908–926
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    https://doi.org/10.1021/acs.jced.5c00765
    Published February 16, 2026
    Copyright © 2026 American Chemical Society

    Abstract

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    With increasing environmental concerns and stricter sulfur-emission regulations, efficient removal of sulfur-containing compounds from fuels has become a critical issue. Traditional hydrodesulfurization (HDS) faces challenges, including high energy consumption, limited efficiency for refractory sulfur compounds, and the need for severe operating conditions. Therefore, alternative desulfurization methods using novel solvents and green materials have gained interest. Among these, deep eutectic solvents (DESs) are particularly promising due to their tunable physicochemical properties, low toxicity, biodegradability, and excellent extraction capabilities. Unlike previous reviews that primarily emphasize experimental performance comparisons of DESs, this review provides a mechanism- and computation-driven perspective on DES-based fuel desulfurization, with particular emphasis on mechanistic elucidation through the integration of experimental investigations and multiscale computational approaches across different desulfurization technologies. It first introduces the definition, classification, and key physicochemical properties of DESs and their influence on desulfurization performance. Experimental and computational approaches were used to elucidate desulfurization mechanisms, including multiscale simulations and advanced characterization techniques. Finally, emerging research trends in DESs research, such as the design of composite systems, multifunctional development, and strategies for green and sustainable applications, are discussed.

    Copyright © 2026 American Chemical Society

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    Supporting Information

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    The Supporting Information is available free of charge at https://pubs.acs.org/doi/10.1021/acs.jced.5c00765.

    • Additional data related to desulfurization and details of the literature search strategy (PDF)

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    Journal of Chemical & Engineering Data

    Cite this: J. Chem. Eng. Data 2026, 71, 3, 908–926
    Click to copy citationCitation copied!
    https://doi.org/10.1021/acs.jced.5c00765
    Published February 16, 2026
    Copyright © 2026 American Chemical Society

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