Search results for "biofuels"

showing 10 items of 50 documents

Producing high-strength liquor from mesophilic batch acidification of chicken manure.

2015

This report describes the results from anaerobic batch acidification of chicken manure as a mono-substrate studied under mesophilic conditions. The manure was diluted with tap water to prevent methane formation during acidification and to improve mixing conditions by reducing fluid viscosity; no anaerobic digester sludge has been added as an inoculum. Highest acidification rates were measured at concentrations of 10 gVS L−1 and 20 gVS L−1; the pH value remained high (pH 6.9–7.9) throughout the test duration and unexpected fast methane formation was observed in every single batch. At substrate concentrations of 10 gVS L−1 there was a remarkable methane formation representing a value of 82% …

Environmental EngineeringWaste managementChemistryHydrogen-Ion ConcentrationPulp and paper industryFatty Acids VolatilePollutionManureManureAnaerobic digestionBioreactorsTap waterBiogasWaste ManagementBiofuelBiofuelsAnimalsChicken manureAnaerobic exerciseChickensMethaneMesophileWaste managementresearch : the journal of the International Solid Wastes and Public Cleansing Association, ISWA
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Biogas production and saccharification of Salix pretreated at different steam explosion conditions.

2011

Abstract Different steam explosion conditions were applied to Salix chips and the effect of this pretreatment was evaluated by running both enzymatic hydrolysis and biogas tests. Total enzymatic release of glucose and xylose increased with pretreatment harshness, with maximum values being obtained after pretreatment for 10 min at 210 °C. Harsher pretreatment conditions did not increase glucose release, led to degradation of xylose and to formation of furfurals. Samples pretreated at 220 and 230 °C initially showed low production of biogas, probably because of inhibitors produced during the pretreatment, but the microbial community was able to adapt and showed high final biogas production. I…

Environmental EngineeringWaste managementRenewable Energy Sustainability and the EnvironmentChemistryCarbohydratesPoison controlBiomassLignocellulosic biomassBioengineeringSalixGeneral MedicineXylosePulp and paper industrychemistry.chemical_compoundBiogasBioenergyEnzymatic hydrolysisBiofuelsWaste Management and DisposalChromatography High Pressure LiquidSteam explosionBioresource technology
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Biofuel blending reduces particle emissions from aircraft engines at cruise conditions.

2017

Aviation-related aerosol emissions contribute to the formation of contrail cirrus clouds that can alter upper tropospheric radiation and water budgets, and therefore climate1. The magnitude of air-traffic-related aerosol–cloud interactions and the ways in which these interactions might change in the future remain uncertain. Modelling studies of the present and future effects of aviation on climate require detailed information about the number of aerosol particles emitted per kilogram of fuel burned and the microphysical properties of those aerosols that are relevant for cloud formation. However, previous observational data at cruise altitudes are sparse for engines burning conventional fuel…

Greenhouse Effect010504 meteorology & atmospheric sciencesMeteorologyParticle numberAircraftAviation020209 energyCruiseClimate change02 engineering and technologyJet fuelAtmospheric sciences7. Clean energy01 natural sciencesGlobal WarmingArticle0202 electrical engineering electronic engineering information engineeringWolkenphysikAerosol0105 earth and related environmental sciencesVehicle EmissionsAerosolsMultidisciplinarybusiness.industryAtmosphärische SpurenstoffeAerosol13. Climate actionBiofuelBiofuelsaviationEnvironmental sciencebiofuelCirrusParticulate Matterbusinesscontraiö cirrusNature
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Improvement of the thermophilic anaerobic digestion and hygienisation of waste activated sludge by synergistic pretreatment

2019

Hybrid disintegration of waste activated sludge (WAS) before the thermophilic anaerobic stabilization of WAS contributes to the intensification of organic compounds decomposition and increases the effectiveness of the anaerobic stabilization process compared to the fermentation of raw WAS. This article investigates the influence of a chemical-thermal pretreatment procedure with the use of NaOH and freezing by the dry ice on WAS. We found that the hybrid pretreatment of WAS causes higher concentration of released organics in the liquid phase (represented here as a change in soluble chemical oxygen demand - SCOD value) in comparison to these disintegration techniques used separately. The use …

Hot TemperatureEnvironmental Engineering020209 energy02 engineering and technology010501 environmental scienceshygienisationWaste Disposal Fluid01 natural sciencesmethane productionSalmonellaEscherichia coli0202 electrical engineering electronic engineering information engineeringAnaerobiosisMethane productionthermophilic fermentation0105 earth and related environmental sciencesBiological Oxygen Demand AnalysisSewageWaste activated sludge (WAS)ChemistryThermophilehybrid disintegrationGeneral MedicinePulp and paper industryDecompositionAnaerobic digestionActivated sludgeBiofuelsFermentationMethaneAnaerobic exerciseJournal of Environmental Science and Health. Part A, Toxic/Hazardous Substances & Environmental Engineering
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Effects of heat treatment on hydrogen production potential and microbial community of thermophilic compost enrichment cultures

2011

Cellulosic plant and waste materials are potential resources for fermentative hydrogen production. In this study, hydrogen producing, cellulolytic cultures were enriched from compost material at 52, 60 and 70°C. Highest cellulose degradation and highest H(2) yield were 57% and 1.4 mol-H(2) mol-hexose(-1) (2.4 mol-H(2) mol-hexose-degraded(-1)), respectively, obtained at 52°C with the heat-treated (80°C for 20 min) enrichment culture. Heat-treatments as well as the sequential enrichments decreased the diversity of microbial communities. The enrichments contained mainly bacteria from families Thermoanaerobacteriaceae and Clostridiaceae, from which a bacterium closely related to Thermoanaerobiu…

Hot TemperatureEnvironmental EngineeringMicrobial metabolismBioengineeringPolymerase Chain ReactionEnrichment cultureMicrobiologySoilchemistry.chemical_compoundRNA Ribosomal 16SClostridiaceaeFood scienceClostridium stercorariumCelluloseCelluloseWaste Management and DisposalSoil MicrobiologyHydrogen productionBiological Oxygen Demand AnalysisBacteriabiologyDenaturing Gradient Gel ElectrophoresisRenewable Energy Sustainability and the EnvironmentGeneral MedicineDark fermentationbiology.organism_classification220 Industrial biotechnologychemistryBiofuelsFermentative hydrogen productionFermentationHydrogen
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Environmental impact of submerged anaerobic MBR (SAnMBR) technology used to treat urban wastewater at different temperatures

2013

[EN] The objective of this study was to assess the environmental impact of a submerged anaerobic MBR (SAnMBR) system in the treatment of urban wastewater at different temperatures: ambient temperature (20 and 33 degrees C), and a controlled temperature (33 degrees C). To this end, an overall energy balance (OEB) and life cycle assessment (LCA), both based on real process data, were carried out. Four factors were considered in this study; (1) energy consumption during wastewater treatment; (2) energy recovered from biogas capture; (3) potential recovery of nutrients from the final effluent; and (4) sludge disposal. The OEB and LCA showed SAnMBR to be a promising technology for treating urban…

INGENIERIA HIDRAULICAEnvironmental EngineeringBioengineeringEnergy balanceEnvironmentWastewaterWaste Disposal FluidWater PurificationEnvironmental impactLife cycle assessmentBioreactorsBiogasAnaerobiosisCitiesWaste Management and DisposalLife-cycle assessmentEffluentTECNOLOGIA DEL MEDIO AMBIENTESubmerged anaerobic MBR (SAnMBR)SewageSulfatesRenewable Energy Sustainability and the EnvironmentGlobal warming potentialTemperatureEnvironmental engineeringMembranes ArtificialGeneral MedicineWaste treatmentWastewaterBiofuelBiofuelsEnvironmental scienceSewage treatmentWater treatmentMethane
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Economic and environmental sustainability of an AnMBR treating urban wastewater and organic fraction of municipal solid waste

2016

[EN] The objective of this study was to evaluate the economic and environmental sustainability of a sub- merged anaerobic membrane bioreactor (AnMBR) treating urban wastewater (UWW) and organic fraction of municipal solid waste (OFMSW) at ambient temperature in mild/hot climates. To this aim, power requirements, energy recovery from methane (biogas methane and methane dissolved in the effluent), consumption of reagents for membrane cleaning, and sludge handling (polyelectrolyte and energy consumption) and disposal (farmland, landfilling and incineration) were evaluated within different operating scenarios. Results showed that, for the operating conditions considered in this study, AnMBR tec…

INGENIERIA HIDRAULICAEnvironmental EngineeringMunicipal solid waste0208 environmental biotechnologySewageIncineration02 engineering and technologyWastewater010501 environmental sciencesManagement Monitoring Policy and LawSolid WasteOrganic fraction of municipal solid waste (OFMSW)Waste Disposal Fluid01 natural sciencesBioreactorsBiogasUrban wastewater (UWW)Ambient temperatureWaste Management and DisposalEffluentTECNOLOGIA DEL MEDIO AMBIENTE0105 earth and related environmental sciencesEnergy recoverySewageWaste managementSulfatesbusiness.industryAnaerobic membrane bioreactor (AnMBR)Life cycle analysis (LCA)TemperatureEnvironmental engineeringMembranes ArtificialGeneral MedicineRefuse Disposal020801 environmental engineeringIncinerationEnergy consumptionWaste Disposal FacilitiesWastewaterBiofuelBiofuelsCosts and Cost AnalysisEnvironmental sciencebusinessMethane
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An experimental and kinetic modeling study on the oxidation of 1,3-dioxolane

2021

International audience; The modern catalytic or enzymatic advances allow the production of novel biofuel. Among them, 1,3dioxolane can be produced from formaldehyde and ethylene glycol, both can be obtained from biomass. In this study, the oxidation of 1,3-dioxolane is studied at stoichiometric conditions. The ignition delay times of 1,3-dioxolane/O 2 /inert mixtures were measured in a shock tube and in a rapid compression machine at pressures of 20 to 40 bar and temperatures ranging from 630 to 1300 K. The pressure profiles recorded in the rapid compression machine show a first stage of ignition enlightening the influence of the low temperature chemistry of combustion. Furthermore, mole fr…

Jet-stirred reactor13-dioxolaneMaterials science[SPI] Engineering Sciences [physics]General Chemical EngineeringThermodynamicsCombustion02 engineering and technology010402 general chemistryMole fractionCombustion7. Clean energy01 natural sciencesCatalysislaw.inventionReaction rate[SPI]Engineering Sciences [physics]lawPhysical and Theoretical ChemistryShock tubeComputingMilieux_MISCELLANEOUS[CHIM.ORGA]Chemical Sciences/Organic chemistryMechanical Engineering[SPI.FLUID]Engineering Sciences [physics]/Reactive fluid environment021001 nanoscience & nanotechnologykinetic modeling0104 chemical sciencesIgnition system[CHIM.THEO]Chemical Sciences/Theoretical and/or physical chemistry13. Climate actionBiofuels0210 nano-technologyStoichiometryBar (unit)
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Dissolution mechanism of crystalline cellulose in H3PO4 as assessed by high-field NMR spectroscopy and Fast Field Cycling NMR relaxometry

2009

Many processes have been proposed to produce glucose as a substrate for bacterial fermentation to obtain bioethanol. Among others, cellulose degradation appears as the most convenient way to achieve reliable amounts of glucose units. In fact, cellulose is the most widespread biopolymer, and it is considered also as a renewable resource. Due to extended intra- and interchain hydrogen bonds that provide a very efficient packing structure, however, cellulose is also a very stable polymer, the degradation of which is not easily achievable. In the past decade, researchers enhanced cellulose reactivity by increasing its solubility in many solvents, among which concentrated phosphoric acid (H(3)PO…

Magnetic Resonance SpectroscopyInorganic chemistrySettore AGR/13 - Chimica Agrariaengineering.materialPolysaccharidechemistry.chemical_compound31P NMRPhosphoric AcidsCelluloseSolubilityPhosphoric acidDissolutionchemistry.chemical_classification13C NMREthanolbiomassesNMRD profileGeneral ChemistryNuclear magnetic resonance spectroscopyCarbon-13 NMRcellulosechemistrySolubilityBiofuelsFast field cycling NMRengineeringBiopolymerGeneral Agricultural and Biological SciencesCrystallization
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Methyl-3-Hexenoate Combustion Chemistry: Experimental Study and Numerical Kinetic Simulation

2020

International audience; This work represents a detailed investigation of combustion and oxidation of methyl-3-hexenoate (CAS Number 2396-78-3), including experimental studies of combustion and oxidation characteristics, quantum chemistry calculations and kinetic model refinement. Following experiments have been carried out: Speciation measurements during oxidation in a jet-stirred reactor at 1 atm; chemical speciation measurements in a stoichiometric premixed flame at 1 atm using molecular-beam mass-spectrometry; ignition delay times measurements in a shock tube at 20 and 40 bar; and laminar burning velocity measurements at 1 atm using a heat-flux burner over a range of equivalence ratios. …

Materials scienceGeneral Chemical EngineeringFlame structureGeneral Physics and AstronomyEnergy Engineering and Power TechnologyThermodynamics02 engineering and technologyKinetic energyCombustion01 natural sciences7. Clean energylaw.invention020401 chemical engineeringlawOxidation mechanisms0103 physical sciencesOxidationJet stirred reactor0204 chemical engineeringShock tubePremixed flame010304 chemical physics[SPI.FLUID]Engineering Sciences [physics]/Reactive fluid environmentBurning velocityLaminar flowGeneral Chemistrykinetic modelingIgnitionbiofuelsIgnition system[CHIM.THEO]Chemical Sciences/Theoretical and/or physical chemistryFuel TechnologyFlame structureCombustorMethyl-3-hexenoate
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