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dc.contributor.editorTumuluru, Jaya
dc.date.accessioned2021-05-01T15:09:45Z
dc.date.available2021-05-01T15:09:45Z
dc.date.issued2021
dc.identifierONIX_20210501_9783039439935_187
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/68441
dc.description.abstractWoody biomass is most widely used for energy production. In the United States, roughly 2% of the energy consumed annually is generated from wood and wood-derived fuels. Woody biomass needs to be preprocessed and pretreated before it is used for energy production. Preprocessing and pretreatments improve the physical, chemical, and rheological properties, making them more suitable for feeding, handling, storage transportation, and conversion. Mechanical preprocessing technologies such as size reduction and densification, help improve particle size distribution and density. Thermal pretreatment can reduce grinding energy and torrefied ground biomass has improved sphericity, particle surface area, and particle size distribution. This book focuses on several specific topics, such as understanding how forest biomass for biofuels impacts greenhouse gas emissions; mechanical preprocessing, such as densification of forest residue biomass, to improve physical properties such as size, shape, and density; the impact of thermal pretreatment temperatures on woody biomass chemical composition, physical properties, and microstructure for thermochemical conversions such as pyrolysis and gasification; the grindability of torrefied pellets; use of wood for gasification and as a filter for tar removal; and understanding the pyrolysis kinetics of biomass using thermogravimetric analyzers.
dc.languageEnglish
dc.subject.classificationthema EDItEUR::T Technology, Engineering, Agriculture, Industrial processes::TB Technology: general issues::TBX History of engineering and technologyen_US
dc.subject.othergrindability
dc.subject.othertorrefied biomass
dc.subject.otherpellet
dc.subject.otherenergy consumption
dc.subject.otherco-firing
dc.subject.otherbiomass
dc.subject.othergasification
dc.subject.othertar
dc.subject.othersyngas cleaning
dc.subject.otherdry filter
dc.subject.otherpyrolysis
dc.subject.otherchemical composition
dc.subject.othermicro-structure
dc.subject.otherphysical properties
dc.subject.otherscanning electron microscopy
dc.subject.otherwood
dc.subject.otherthermal pretreatment
dc.subject.othertorrefaction
dc.subject.othertimber
dc.subject.otherharvest residues
dc.subject.otherethanol
dc.subject.otherGHG savings
dc.subject.otherMichigan
dc.subject.othervariety and rootstock selection
dc.subject.otheralmond tree
dc.subject.otheragricultural practices
dc.subject.otherhalophytes
dc.subject.otherPhoenix dactylifera
dc.subject.otherSalicornia bigelovii
dc.subject.otherthermogravimetric analysis
dc.subject.othertorrefied biomass
dc.subject.othercorrelation
dc.subject.otherultimate analysis
dc.subject.othersolid yield
dc.subject.otherheating value
dc.subject.otherOLS
dc.subject.other2-inch top pine residue + switchgrass blends
dc.subject.otherpelleting process variables
dc.subject.otherpellet quality
dc.subject.otherspecific energy consumption
dc.subject.otherresponse surface models
dc.subject.otherhybrid genetic algorithm
dc.subject.otherpelleting
dc.subject.otherfunctional groups
dc.subject.otherpellet strength
dc.subject.othercombustion efficiency
dc.subject.otherforest biomass
dc.subject.otherAustralia
dc.subject.otherbiomass energy potential
dc.subject.otheremission
dc.subject.otherbioenergy
dc.titleWoody Biomass for Bioenergy Production
dc.typebook
oapen.identifier.doi10.3390/books978-3-03943-994-2
oapen.relation.isPublishedBy46cabcaa-dd94-4bfe-87b4-55023c1b36d0
oapen.relation.isbn9783039439935
oapen.relation.isbn9783039439942
oapen.pages182
oapen.place.publicationBasel, Switzerland


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