Search results for "lignocellulosic biomass"

showing 8 items of 28 documents

Reactivity of cellulose during hydrothermal carbonization of lignocellulosic biomass

2020

Abstract Hydrothermal carbonization (HTC) of pure cellulose (CE) and birchwood (BW) samples was carried out at temperatures between 160 and 280 °C, 0.5 h residence time and biomass-to-water ratio 1:5, to investigate the reactivity of cellulose in lignocellulosic biomass. Thermogravimetric analysis (TGA) and Fourier transform infrared spectroscopy (FTIR) showed that the CE samples remained unaltered at temperatures up to 220 °C, but were significantly decomposed at 230 °C producing a thermal recalcitrant aromatic and high energy-dense material. FTIR showed that dehydration and aromatization reactions occurred at temperature equal or higher than 230 °C for the CE samples while a similar incre…

Thermogravimetric analysis020209 energyGeneral Chemical EngineeringEnergy Engineering and Power TechnologyLignocellulosic biomass02 engineering and technologyHydrothermal carbonizationBirchwoodchemistry.chemical_compoundHydrothermal carbonization020401 chemical engineeringSettore BIO/13 - Biologia Applicata0202 electrical engineering electronic engineering information engineeringSolid biofuelLignin0204 chemical engineeringCelluloseFourier transform infrared spectroscopyAromatizationAcid hydrolysiCellulose reactivityFuel TechnologychemistryAcid hydrolysisNuclear chemistrySettore AGR/16 - Microbiologia Agraria
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Influence of Elevated Pressure on the Torrefaction of Wood

2016

The use of pressurized reactors in industrial processes can improve efficiency and economics. Torrefaction is a partial pyrolysis of lignocellulosic biomass designed to result in a solid product with improved fuel properties for utilization in combustion and gasification. In this work, the influence of elevated pressure on the torrefaction of wood has been investigated. Wood samples were torrefied using a pressurized thermogravimetric reactor (PTGR) with pressures of 0.1 to 2.1 MPa. The results indicate that reactor pressure, particle size of feedstock, and wood species are all factors in torrefaction yield improvements. Torrefaction at 2.1 MPa pressure improved the higher heating value (ca…

Yield (engineering)Materials science020209 energyGeneral Chemical Engineeringpressurized reactorsEnergy Engineering and Power TechnologyLignocellulosic biomass02 engineering and technologyRaw materialCombustionPulp and paper industryTorrefactiontorrefactionFuel Technology0202 electrical engineering electronic engineering information engineeringHeat of combustionParticle sizePyrolysista218woodEnergy & Fuels
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Alkaline pretreatment to enhance one-stage CH4 and two-stage H2/CH4 production from sunflower stalks: Mass, energy and economical balances

2015

Abstract Biological production of second generation biofuels such as biohydrogen (H2) or methane (CH4) represents a promising alternative to fossils fuels. Alkaline pretreatments of lignocellulosic biomass are known to enhance the accessibility and the bioconversion of hollocelluloses during anaerobic digestion and dark fermentation processes. In the present study, four different configurations were investigated: one-stage CH4 continuous and two-stage H2 batch/CH4 continuous process with and without alkaline pretreatment of sunflower stalks (55 °C, 24 h, 4 g NaOH/100 g TS). The results showed that two stage H2/CH4 (150 ± 3.5 mL CH4 g−1 VS) did not improve methane yields compared to one stag…

anaerobic digestionWaste managementChemistryBioconversionGeneral Chemical Engineeringmethane[SDV]Life Sciences [q-bio]biohydrogenBiomassLignocellulosic biomassGeneral ChemistryDark fermentationPulp and paper industry7. Clean energyIndustrial and Manufacturing EngineeringAnaerobic digestiondark fermentation13. Climate actionBiofuelDigestateEnvironmental ChemistryBiohydrogenta219lignocellulosic biomassenergy assessment
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Economic assessment of Eucalyptus (spp.) for biomass production as alternative crop in Southern Italy

2015

The increase in energy prices and the stagnation of sales prices of the main agricultural commodities required a rethinking of farm production strategies. Since during the last years, thanks to a series of policies aimed at promoting renewable sources it has been a rapid diffusion of lignocellulosic biomass species, this paper aimed at evaluating the economic feasibility of the introduction of eucalyptus (Eucalyptus spp.) as energy crop for farmers of Southern Italy, by comparing it with traditional crop rotations. In particular, economic analysis has been carried out in a representative case study located in the Sicilian hilly hinterland where, in 2013, it has been built a biomass plant fo…

business.industryAgroforestryRenewable Energy Sustainability and the EnvironmentCompetitiveneBiomassLignocellulosic biomassCrop rotationFarmEucalyptusRenewable energyEnergy cropBiomaSensitivity analysiSettore AGR/01 - Economia Ed Estimo RuraleEconomicsMarket priceWoodchipsShort rotation forestbusiness
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Rice straw management: the big waste

2010

Rice is one of the major foods, with consumption per capita of 65 kg per year, accounting for 20% of global ingested calories. Rice production is expected to increase significantly in the near future in order to feed the rising human population. Today, paddy rice culture produces 660 million tons of rice, along with 800 million dry tons of agricultural residues, mainly straw. This biomass is managed predominantly through rice straw burning (RSB) and soil incorporation strategies. RSB leads to significant air pollution and has been banned in some regions, whereas stubble and straw incorporation into wet soil during land preparation is associated with enhanced methane emissions. Therefore, bo…

education.field_of_studyRenewable Energy Sustainability and the Environmentbusiness.industryPopulationfood and beveragesBiomassLignocellulosic biomassBioengineeringStrawAgronomyBioenergyBiofuelAgricultureEnvironmental scienceEnergy sourcebusinesseducationBiofuels, Bioproducts and Biorefining
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Catalytic Activity of Char Obtained from Fast Pyrolysis in Esterification Reactions

2021

In this study different pathways for obtaining activated carbon with catalytical activity were analysed. Industrially fast pyrolysis is an efficient way of lignocellulosic biomass processing, since in this process various important high value chemicals are obtained. Biochar is obtained as the by-product in fast pyrolysis process from which activated carbon can be acquired with further chemical activation. Different methods for chemical activation of biochar were tested with the obtained activated charcoals being used as a catalyst in esterification reactions to evaluate their potential use as a heterogenic catalyst. Highest catalytical activity was observed when biochar was pre-treated with…

inorganic chemicalsMaterials science020209 energyLignocellulosic biomass02 engineering and technology021001 nanoscience & nanotechnologyCondensed Matter PhysicsAtomic and Molecular Physics and OpticsCatalysis0202 electrical engineering electronic engineering information engineeringOrganic chemistryGeneral Materials ScienceEsterification reactionChar0210 nano-technologyPyrolysisSolid State Phenomena
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Production of ethyl lactate by activated carbon-supported Sn and Zn oxide catalysts utilizing lignocellulosic side streams

2021

In this study, activated carbon-supported Sn and Zn oxide catalysts were prepared from hydrolysis lignin and used for the conversion of model solutions of trioses, hexoses, and lignocellulosic biomass hydrolysates to ethyl lactate. Both catalysts, SnO2@AC and ZnO@AC, were able to produce ethyl lactate in high yields. SnO2@AC was a more active and selective catalyst in triose (dihydroxyacetone) conversion, providing 99% yield to ethyl lactate. ZnO@AC, by contrast, was more selective in glucose and hydrolysate conversion, with a yield of 60% and 85%, respectively. The ethyl lactate yields were significantly higher than those from the optimized model solution experiments when using ZnO@AC cata…

katalyytitsinkkioksidikatalyysiaktiivihiilioksiditkemian tekniikkaheterogeneous catalystactivated carbonbiomassa (teollisuus)metal oxideethyl lactatelaktaatitlignocellulosic biomass
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Zinc Adsorption by Activated Carbon Prepared from Lignocellulosic Waste Biomass

2019

Sawdust was used as a precursor for the production of biomass-based activated carbon. Carbonization and activation are single-stage processes, and steam was used as a physical activation agent at 800 &deg

sinkki (metallit)hiili0211 other engineering and technologiesBiomass02 engineering and technology010501 environmental sciences01 natural scienceslcsh:Technologylcsh:ChemistryadsorbentGeneral Materials ScienceInstrumentationlcsh:QH301-705.5Fluid Flow and Transfer ProcessesCarbonizationzincGeneral Engineeringfood and beverageslcsh:QC1-999Computer Science Applicationsvisual_artvisual_art.visual_art_mediumSawdustmedicine.drugLignocellulosic biomasschemistry.chemical_elementZinccomplex mixturesAdsorptionmedicinebiomassa (teollisuus)lignocellulosic biomass0105 earth and related environmental scienceslignoselluloosa021110 strategic defence & security studiesKinetic modellcsh:TProcess Chemistry and TechnologycarbonizationchemistryChemical engineeringlcsh:Biology (General)lcsh:QD1-999lcsh:TA1-2040adsorptionregenerationadsorptiolcsh:Engineering (General). Civil engineering (General)lcsh:PhysicsActivated carbonApplied Sciences
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