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dc.contributor.editorRodríguez Pascual, Alejandro
dc.contributor.editorEspinosa Víctor, Eduardo
dc.date.accessioned2022-01-11T13:50:32Z
dc.date.available2022-01-11T13:50:32Z
dc.date.issued2021
dc.identifierONIX_20220111_9783036524757_882
dc.identifier.urihttps://directory.doabooks.org/handle/20.500.12854/77050
dc.description.abstractRecently, there has been a growing awareness of the need to make better use of natural resources. Hence, the utilization of biomass has led to so-called biorefinery, consisting of the fractionation or separation of the different components of the lignocellulosic materials in order to achieve a total utilization of the same, and not only of the cellulosic fraction for paper production. The use of plant biomass as a basic raw material implies a shift from an economy based on the exploitation of non-renewable fossil fuels, with limited reserves or with regeneration cycles far below the rates of exploitation, to a bioeconomy based on the use of renewable organic natural resources, with balanced regeneration and extraction cycles. To make this change, profound readjustments in existing technologies are necessary, as well as the application of new approaches in research, development, and production."Biorefinery" is the term used to describe the technology for the fractionation of plant biomass into energy, chemicals, and consumer goods. The future generation of biorefinery will include treatments, leading to high-value-added compounds. The use of green chemistry technologies and principles in biorefineries, such as solvent and reagent recovery and the minimization of effluent and gas emissions, is essential to define an economically and environmentally sustainable process.In particular, the biorefinery of lignocellulosic materials to produce biofuels, chemicals and materials is presented as a solid alternative to the current petrochemical platform and a possible solution to the accumulation of greenhouse gases.
dc.languageEnglish
dc.subject.classificationthema EDItEUR::G Reference, Information and Interdisciplinary subjects::GP Research and information: generalen_US
dc.subject.otherlignocellulosic biomass
dc.subject.othersolid-state fermentation
dc.subject.otherenzymatic hydrolysis
dc.subject.otheraerated bioreactor
dc.subject.otherAspergillus oryzae
dc.subject.otherlignin
dc.subject.otherlignocellulose
dc.subject.otheraromatics
dc.subject.otherbiobased
dc.subject.otherepoxy
dc.subject.otherfatty acid
dc.subject.otherbiopolymers
dc.subject.otherbiobased materials
dc.subject.otherbiorenewable
dc.subject.otherbio-based filament
dc.subject.other3D printing
dc.subject.othersugarcane bagasse pulp
dc.subject.otherbarley straw
dc.subject.othercomposite
dc.subject.otherflexural strength
dc.subject.otherbiobased polyethylene
dc.subject.othernanocellulose
dc.subject.otherβ-cyclodextrin
dc.subject.othercryogels
dc.subject.otherfilms
dc.subject.otherbiomaterials
dc.subject.othercellulose
dc.subject.otherdialdehyde cellulose
dc.subject.otherorganosilane chemistry
dc.subject.other29Si NMR
dc.subject.othersolid state NMR
dc.subject.othersilanization
dc.subject.otherlignocellulose valorization
dc.subject.other‘lignin-first’
dc.subject.otherreductive catalytic fractionation
dc.subject.otherlignocellulose nanofibers
dc.subject.otherhorticultural residues
dc.subject.otherpaperboard
dc.subject.otherrecycling
dc.subject.otherbiosurfactants
dc.subject.otherenzymatic saccharification
dc.subject.otherfermentation
dc.subject.otherquinoa saponins
dc.subject.othersteam-pretreated spruce
dc.subject.otherlignocellulosic material
dc.subject.otherxylose
dc.subject.otherfurfural
dc.subject.otheriron chloride
dc.subject.othermicrowave reactor
dc.subject.otherbiorefinery
dc.subject.otherelectrosynthesis
dc.subject.otherbiomass
dc.subject.othercarbohydrate
dc.subject.othersaccharides
dc.subject.otherelectro-oxidation
dc.subject.otherelectroreduction
dc.subject.otherresidue
dc.subject.otheragro-industry
dc.subject.otherhigh-value products
dc.subject.otherbanana
dc.subject.othertorrefaction
dc.subject.otherJerusalem artichoke
dc.subject.otherbiofuel
dc.subject.otherenergy crops
dc.subject.otheragiculture
dc.subject.othermicro-fibrillated cellulose
dc.subject.otherformaldehyde adhesives
dc.subject.otherwood-based panels
dc.subject.otherkraft lignin
dc.subject.otheradsorbent material
dc.subject.othercopper adsorption
dc.subject.otherH2S adsorption
dc.subject.otherH2S removal
dc.subject.othern/a
dc.titleLignocellulosic Biomass
dc.typebook
oapen.identifier.doi10.3390/books978-3-0365-2474-0
oapen.relation.isPublishedBy46cabcaa-dd94-4bfe-87b4-55023c1b36d0
oapen.relation.isbn9783036524757
oapen.relation.isbn9783036524740
oapen.pages312
oapen.place.publicationBasel, Switzerland


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