Turning fossil-derived CO2 into value-added chemicals and carbon resources: Thermochemical conversion of microalgae with acid mine drainage sludge

  • Kwon, Gihoon; 
  • Yoon, Kwangsuk; 
  • Lee, Jeong Seop; 
  • Sim, Sang Jun; 
  • Song, Hocheol
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초록

Global consumption of fossil resources has increased to meet the growing demand for carbon-based products, including fuels, chemicals, and plastic products, significantly contributing to global warming. This study explored sequestration of fossil-derived atmospheric CO2 using Chlamydomonas reinhardtii (C. reinhardtii) microalgae and its conversion into value-added products via a thermochemical pathway. Radiocarbon analysis revealed that C. reinhardtii, cultivated in a photobioreactor (PBR), effectively assimilated carbon in the flue gas of a liquefied natural gas (LNG) power plant, exhibiting low modern carbon (pMC) (17 %). Amending acid mine drainage sludge (AMDS) during the pyrolysis of harvested C. reinhardtii enhanced H2 and CO production. AMDS also reduced pyrogenic oil production at low loading (8:2 of C. reinhardtii to AMDS mass ratio), but at higher loading (3:7), it produced oil with much simplified composition and a notable content of hexadecanenitrile, a high-value chemical. The residual fraction of C. reinhardtii was carbonized into biochar enriched with g-C3N4 structure, while Fe phases in AMDS were transformed into Fe0 and Fe9S10. The resulting biochar exhibited strong persulfate activation property for amaranth degradation. These findings represent a practical approach to converting CO2 into valuable chemicals and environmental catalysts, highlighting its potential for sustainable CO2 management.

키워드

CO 2 capture; Microalgae; Pyrolysis; Acid mine drainage sludge; Syngas; Persulfate activation; PYROLYSIS; BIOMASS; VALORIZATION; REDUCTION; EVOLUTION; GRAPHENE; KINETICS; NITROGEN; HZSM-5; ALGAE
제목
Turning fossil-derived CO2 into value-added chemicals and carbon resources: Thermochemical conversion of microalgae with acid mine drainage sludge
저자
Kwon, Gihoon; Yoon, Kwangsuk; Lee, Jeong Seop; Sim, Sang Jun; Song, Hocheol
DOI
10.1016/j.psep.2025.107950
발행일
2025-11
유형
Article
저널명
Process Safety and Environmental Protection: Transactions of the Institution of Chemical Engineers, Part B
권
203