Comprehensive recovery of biocrude, bioactives, and solid fuel from wet coffee grounds using liquefied dimethyl ether
  • Cao, Ruqian
  • Myint, Aye Aye
  • Muhammad, Zubair
  • Choi, Jongho
  • Wulandari, Sabrinna
  • ... Kim, Jaehoon
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초록

Spent coffee grounds (SCG), rich in lipids, antioxidants, and other valuable compounds, are a potential renewable resource for energy and functional products. This study introduces an environmentally benign and energy-efficient technique for separating lipids, bioactive species, and highly calorific solid residues from wet SCG using liquefied dimethyl ether (L-DME) without any pretreatment. This L-DME extraction process was performed semi-continuously under various temperatures, pressures, and DME consumption levels to optimize recovery performance. The process efficiently removed 95.9–97.1 wt% of the moisture from wet SCG. The biocrude exhibited a high FAME content (988.4 mg/g), while the removed water contained significant caffeine (93.44 mg/g dry extract) and antioxidant activity (2534.4 μmol TE/g dry extract), highlighting their potential applications in biodiesel production and the cosmetic and food industry. Furthermore, the defatted dry solid residue showed high heating value and low ash content, making it suitable for combustion as a solid fuel. Additionally, a techno-economic analysis was conducted to evaluate the scalability and economic viability of the L-DME extraction process. Overall, this work demonstrates the potential of L-DME as a versatile and scalable biorefinery platform for converting coffee waste into valuable fuel and functional products.

키워드

Bioactive compoundsBiodieselBiosolid fuelDimethyl etherLipids extractionSpent coffee groundsSUPERCRITICAL-FLUID EXTRACTIONGREEN COFFEESPENTBIODIESELOILOPTIMIZATIONMECHANISMSBIOMASSLIPIDSFOOD
제목
Comprehensive recovery of biocrude, bioactives, and solid fuel from wet coffee grounds using liquefied dimethyl ether
저자
Cao, RuqianMyint, Aye AyeMuhammad, ZubairChoi, JonghoWulandari, SabrinnaKim, Jaehoon
DOI
10.1016/j.jiec.2025.10.028
발행일
2026-05-25
유형
Article
저널명
Journal of Industrial and Engineering Chemistry
157
페이지
537 ~ 549