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Life cycle assessment and thermodynamic performance of biomass-based combined cogeneration

dc.contributor.authorCetinkaya, Afsin Yusuf
dc.contributor.authorYilmaz, Fatih
dc.contributor.authorBilgili, Levent
dc.date.accessioned2026-06-27T15:01:07Z
dc.date.issued2024
dc.description.abstractThis study presents a thermodynamic and life cycle analysis of a biomass-based integrated energy system, comprising a biomass gasification cycle, a steam Rankine cycle, and an ammonia fluid Organic Rankine cycle. The primary objective of the system is to efficiently convert olive husk, a sustainable biomass source, into electricity and heating. The gasification process generates syngas, which fuels a gas turbine, producing high-temperature exhaust that drives a Rankine cycle. The thermodynamic analysis indicates that the overall system achieves an energy efficiency of 20.85% and an exergy efficiency of 11.70%. The Rankine cycle exhibits an energy efficiency of 23.91%, while the Organic Rankine cycle demonstrates a higher exergy efficiency of 68.87%. Parametric studies reveal that increasing the combustion chamber temperature significantly enhances system efficiency and output, with energy efficiency rising linearly as the temperature increases from 800 degrees C to 1000 degrees C. Additionally, the analysis emphasizes the importance of the compressor's compression ratio on system performance. A life cycle assessment conducted using the ReCiPe methodology evaluates the environmental impact of the system throughout its lifecycle, revealing critical insights into its sustainability. This comprehensive evaluation highlights the potential of utilizing agricultural waste, such as olive husk, to produce renewable energy, thereby supporting environmental sustainability and waste management goals. The findings underscore the viability of the proposed system for enhancing energy production while minimizing environmental impacts, making it a promising solution for renewable energy generation in regions with abundant biomass resources.en
dc.description.urihttps://doi.org/10.1088/2631-8695/ad9982
dc.identifier.doi10.1088/2631-8695/ad9982
dc.identifier.issn2631-8695
dc.identifier.issue4
dc.identifier.urihttps://hdl.handle.net/20.500.14981/67195
dc.identifier.volume6
dc.identifier.wos001375967300001
dc.language.isoeng
dc.publisherIOP Publishing Ltd
dc.relation.ispartofENGINEERING RESEARCH EXPRESS
dc.subjectbiomass
dc.subjectenergy
dc.subjectexergy
dc.subjecthydogen energy
dc.subjectlife cycle assesment
dc.subjectPOWER-SYSTEM
dc.subjectGASIFICATION
dc.subjectFEASIBILITY
dc.subjectPLANTS
dc.subjectHEAT
dc.subjectCOAL
dc.subjectGAS
dc.subjectEngineering
dc.titleLife cycle assessment and thermodynamic performance of biomass-based combined cogeneration
dc.typeArticle
dspace.entity.typePublication
local.import.sourceWOS

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