Repository Article

·2025 OPEN ACCESS

Comprehensive Energy, Exergy, and Environmental Assessment of a Tri-Generation Biomass System Integrating Gasification, Anaerobic Digestion, and Solid Oxide Fuel Cell

Mehran Mohammadian , Roghayyeh Motallebzadeh , Jafar Ghafouri , Nader Javani YTU

DOAJ (DOAJ: Directory of Open Access Journals)

Abstract

Global warming presents a significant challenge, largely driven by carbon dioxide emissions from conventional power generation. Renewable energy technologies, particularly biomass-integrated systems, provide a promising pathway to mitigate these emissions sustainably. This study conducts a comprehensive energy, exergy, and environmental assessment of a tri-generation biomass system incorporating gasification, anaerobic digestion, and a Solid Oxide Fuel Cell (SOFC). Two configurations are examined: one utilizing syngas from gasification and the other biogas from anaerobic digestion. The results show that the biogas-based system achieves a superior exergy efficiency of 44.22%, compared to 39.18% for the gasification-based system, while also reducing CO2 emissions by 0.072 tons/MWh. Additionally, optimizing the fuel utilization factor (0.76 for the digester-SOFC and 0.78 for the gasifier-SOFC) significantly enhances system performance. These findings underscore the environmental benefits of biogas in tri-generation systems and provide valuable insights into optimizing biomass-based energy solutions.

Keywords

Biogas Renewable energy Biomass (ecology) Greenhouse gas Syngas Global warming Solid oxide fuel cell Carbon dioxide Life-cycle assessment Bioenergy Environmental science Waste management

Subject Areas

Thermodynamic and Exergetic Analyses of Power and Cooling Systems ·Mechanical Engineering ·Physical Sciences
Carbon Dioxide Capture Technologies ·Mechanical Engineering ·Physical Sciences
Anaerobic Digestion and Biogas Production ·Building and Construction ·Physical Sciences

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