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Sulfur-doped carbon for enhanced flue gas desulfurization: Synergistic experimental and DFT insights

  • Jun Li
  • , Xiang Wang
  • , Xiao Zhu
  • , Yuke Li
  • , Min Yan*
  • , Yang Ma
  • , Ping Cui
  • , Jingcai Chang
  • , Liqiang Zhang
  • , Tao Wang
  • , Chunyuan Ma
  • , Zhanlong Song
  • *Corresponding author for this work

Research output: Contribution to journalArticleScientificpeer-review

Abstract

The synthesis of sulfur-doped activated coke (SAC) using SO2 as an activator enables simultaneous desulfurizer production and sulfur resource utilization. This study systematically investigated the evolution of carbon properties through sulfur doping and the enhanced desulfurization mechanism through experiments and density functional theory (DFT) calculations. The results demonstrated that SO2 was primarily converted to elemental sulfur (maximum yield: 92.17 %) via redox reactions with carbon, while doped sulfur mainly existed as thiophene and oxidized sulfur groups (maximum doping: 18.92 wt%). Surface sulfur doping modified carbon's physicochemical properties and produced unique saddle-shaped SO2 adsorption curves. Transient experiments and DFT calculations revealed enhanced hydrophilicity through strengthened H2O interactions with sulfur-containing groups (the maximum adsorption energy of H2O reached −58.70 kJ/mol, 2.64 times that of pristine sulfur-free carbon), which promoted H2SO4 migration in micropores via concentration-gradient diffusion to enhance desulfurization. This work provided both a waste-to-resource strategy for desulfurizer preparation and atomic-level insights into the desulfurization enhancement mechanism of SAC, offering design principles for advanced carbon materials in flue gas purification.

Original languageEnglish
Article number136568
Number of pages12
JournalFuel
Volume405
DOIs
Publication statusPublished - 2026

Bibliographical note

Green Open Access added to TU Delft Institutional Repository as part of the Taverne amendment. More information about this copyright law amendment can be found at https://www.openaccess.nl.

Otherwise as indicated in the copyright section: the publisher is the copyright holder of this work and the author uses the Dutch legislation to make this work public.

Keywords

  • DFT calculations
  • Enhanced desulfurization mechanism
  • Physicochemical properties
  • Sulfur-doped activated coke

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