Waste Biomass Gasification Simulation Using Aspen Plus: Performance Evaluation of Wood Chips, Sawdust and Mixed Paper Wastes

dc.contributorHáskóli Íslandsen_US
dc.contributorUniversity of Icelanden_US
dc.contributor.authorSafarian, Sahar
dc.contributor.authorRichter, Christiaan
dc.contributor.authorUnnthorsson, Runar
dc.contributor.departmentIðnaðarverkfræði-, vélaverkfræði- og tölvunarfræðideild (HÍ)en_US
dc.contributor.departmentFaculty of Industrial Eng., Mechanical Eng. and Computer Science (UI)en_US
dc.contributor.schoolVerkfræði- og náttúruvísindasvið (HÍ)en_US
dc.contributor.schoolSchool of Engineering and Natural Sciences (UI)en_US
dc.date.accessioned2019-12-19T10:36:39Z
dc.date.available2019-12-19T10:36:39Z
dc.date.issued2019-06-23
dc.descriptionPublisher's version (útgefin grein)en_US
dc.description.abstractBiomass is one of the most widely available energy sources and gasification is a thermal conversion process where biomass is transformed into a fuel gas with a gasifying agent. In this paper by using ASPEN Plus, a new steady state simulation model for down draft waste biomass gasification was developed. The model that is stoichiometric equilibrium-based is proposed to be used for optimization of the gasifier performance. Prediction accuracy of the model is validated by comparing with available experimental and modeling results in other literature. Then the model is used for comparative analysis of the gasi- fication performance of sawdust, wood chips and mixed paper wastes. In the model, the operating parameters of temperature and equivalence ratio (ER) have been varied over wide range and their effect on syngas composition, syngas yield, low heating value (LHV) of syngas and cold gas efficiency (CGE) has been investigated. Raise in temperature increases the production of CO and H2 which leads to higher syngas yield, LHV and CGE. However, increasing ER decreases the production of CO and H2 which results lessens in LHV and CGE but syngas yield continuously increases because more oxygen is available for biomass reactions at high ER. The optimal values of CO and H2 mole fraction and CGE of sawdust, wood chips and mixed paper wastes are located at 900˚C, 1000˚C and 1000˚C, respectively and ER range is be- tween 0.20 - 0.35 regardless of the kind of biomass which is used as the feedstock.en_US
dc.description.sponsorshipThis paper was a part of the project funded by Icelandic Research Fund (IRF), (in Icelandic: Rannsoknasjodur) and the grant number is 196458-051.en_US
dc.description.versionPeer Revieweden_US
dc.format.extent12-30en_US
dc.identifier.citationSafarian, S., Richter, C. and Unnthorsson, R. (2019) Waste Biomass Gasification Simulation Using Aspen Plus: Performance Evaluation of Wood Chips, Sawdust and Mixed Paper Wastes. Journal of Power and Energy Engineering, 7, 12-30. https://doi.org/10.4236/jpee.2019.76002en_US
dc.identifier.doi10.4236/jpee.2019.76002
dc.identifier.issn2327-588X
dc.identifier.issn2327-5901 (eISSN)
dc.identifier.journalJournal of Power and Energy Engineeringen_US
dc.identifier.urihttps://hdl.handle.net/20.500.11815/1408
dc.language.isoenen_US
dc.publisherScientific Research Publishing, Inc,en_US
dc.relation.ispartofseriesJournal of Power and Energy Engineering;07(06)
dc.rightsinfo:eu-repo/semantics/openAccessen_US
dc.subjectWaste Biomass Gasificationen_US
dc.subjectSimulation Modelen_US
dc.subjectGasifier Performanceen_US
dc.subjectWaste to Energyen_US
dc.subjectLífmassien_US
dc.subjectLífrænn úrganguren_US
dc.subjectOrkaen_US
dc.subjectEldsneytien_US
dc.subjectGösunen_US
dc.subjectHermilíkönen_US
dc.titleWaste Biomass Gasification Simulation Using Aspen Plus: Performance Evaluation of Wood Chips, Sawdust and Mixed Paper Wastesen_US
dc.typeinfo:eu-repo/semantics/articleen_US
dcterms.licenseThis work is licensed under the Creative Commons Attribution International License (CC BY 4.0). http://creativecommons.org/licenses/by/4.0/en_US

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