Search results for "pellets"

showing 10 items of 67 documents

Electric Field Effect on the Thermal Decomposition and Co-combustion of Straw with Solid Fuel Pellets

2019

The aim of this study was to provide more effective use of straw for energy production by co-firing wheat straw pellets with solid fuels (wood, peat pellets) under additional electric control of the combustion characteristics at thermo-chemical conversion of fuel mixtures. Effects of the DC electric field on the main combustion characteristics were studied experimentally using a fixed-bed experimental setup with a heat output up to 4 kW. An axisymmetric electric field was applied to the flame base between the positively charged electrode and the grounded wall of the combustion chamber. The experimental study includes local measurements of the composition of the gasification gas, flame tempe…

Flue gasControl and OptimizationMaterials science020209 energyPelletsEnergy Engineering and Power TechnologyDC electric field02 engineering and technology010501 environmental sciencesCombustion01 natural scienceslcsh:TechnologyMass transferElectric field0202 electrical engineering electronic engineering information engineeringElectrical and Electronic EngineeringComposite materialco-firingEngineering (miscellaneous)thermal decomposition0105 earth and related environmental scienceswheat strawRenewable Energy Sustainability and the Environmentlcsh:Tbog peatSolid fuelpelletsAdiabatic flame temperaturesoftwoodCombustion chamberEnergy (miscellaneous)combustionEnergies
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ESR response to gamma-rays of alanine pellets containing B(OH)3 or Gd2O3.

2007

ESR response to gamma-irradiation (1-50 Gy) of blends containing alanine and either B(OH)(3) or Gd(2)O(3) is reported. The sensitivity of the alanine--B(OH)(3) blend is comparable to the sensitivity of pure alanine, although its lowest detectable dose, LDD, is smaller ( approximately 1.3 Gy) than that of pure alanine ( approximately 2.9 Gy). Alanine with Gd(2)O(3) is about two times more sensitive than pure alanine, and its LDD is 0.8 Gy. The better sensitivity and LDD are probably due to the high atomic number (Z=64) of gadolinium, which enhances the interaction probability with photons and, consequently, the radical yield. This study suggests that other high-Z atoms may be useful for incr…

AlanineHigh atomic numberRadiationAlanineGadoliniumRadiochemistryPelletsElectron Spin Resonance Spectroscopychemistry.chemical_elementGadoliniumESR; Alanine; B(OH)3; Gd2O3; Sensitivity; Mass energy absorption coefficientMass energy absorption coefficientSensitivitychemistryBoric AcidsIsotopesGd2O3Gamma RaysYield (chemistry)RadiometryB(OH)3ESRBoronApplied radiation and isotopes : including data, instrumentation and methods for use in agriculture, industry and medicine
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Torrefied versus conventional pellet production – A comparative study on energy and emission balance based on pilot-plant data and EU sustainability …

2015

Abstract Torrefaction is an emerging technology which enables greater co-firing rates of biomass with coal. To date however there has been a lack of real production data from pilot-scale torrefaction plants. Without such data any environmental benefits of torrefied pellet production are difficult to quantify. In this study data on consumable inputs from a semi-industrial torrefaction plant and the physical properties of produced pellets are used to analyse energy input and air emissions of torrefied pellet production and product transport. EU sustainability criteria are used to compare CO2-equivalent emissions from torrefied and conventional pellet production starting from harvesting of log…

Waste managementbusiness.industrywood pelletsMechanical EngineeringFossil fuelemissionsPelletsBuilding and ConstructionManagement Monitoring Policy and LawREDTorrefactionPelletizingenvironmental impactRenewable energytorrefactionGeneral EnergyBiofuelEnvironmental scienceCoalco-firingbusinessEnergy sourceta215ta218Applied Energy
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Chlorinated dioxins and dibenzothiophenes in fly ash samples from combustion of peat, wood chips, refuse derived fuels and liquid packaging boards

1995

Abstract Peat, wood chips, refuse derived fuel and liquid packaging board in different combinations were burned at a temperature of at least 850 °C. Fly ash samples from these combustions were analyzed for polychlorinated dibenzo-p-dioxins (PCDDs) and polychlorinated dibenzothiophenes (PCDBTs) by high resolution GC/MS. The concentrations of tri- and tetrachlorodibenzothiophenes and tri-, tetra- and pentachlorodioxins were highest when mixtures of wood chips and refuse derived fuel (RDF) were burned. The fly ash from the combustion of pure peat pellets did not contain any polychlorinated dibenzothiophenes. When wood chips and RDF were burned the concentrations of chlorinated compounds in fly…

Environmental EngineeringPeatrefuseanalysisHealth Toxicology and MutagenesisPelletschemistry.chemical_elementHigh resolutionCombustionLiquid packaging boarddioxinsChlorineEnvironmental ChemistryRefuse-derived fuelwood fuelsWaste managementPublic Health Environmental and Occupational HealthemissionsGeneral MedicineGeneral Chemistrychlorine aromatic compoundsPollutionwood shipsfly ashchemistrythiophenesFly ashpeatcombustion
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Environmental performance of wood pellets' production through life cycle analysis

2016

Abstract Forests play a key role as the source of an essential renewable material and/or fuel: wood. The aim of this study was to evaluate the environmental impacts related to high-quality pellet production for domestic heating following the LCA (life cycle assessment) methodology and considering a cradle-to-gate perspective in the Tuscany region. This is representative and interesting for Italian pellet factories and for similar factories located in Central Europe, considering the Italian contribution to the production capacity of that area. All of the activities involved, from wood extraction in no-industrial forests to packed pellet production, ready for delivery to final users, were tak…

Renewable energyEngineeringEnvironmental analysis020209 energyPelletsNo-industrial forestry02 engineering and technologyForest produce010501 environmental sciences01 natural sciencesIndustrial and Manufacturing EngineeringEnvironmental impactLife cycle assessmentPellet0202 electrical engineering electronic engineering information engineeringEnvironmental impact assessmentElectrical and Electronic EngineeringLife-cycle assessmentSettore AGR/06 - Tecnologia Del Legno E Utilizzazioni Forestali0105 earth and related environmental sciencesCivil and Structural EngineeringWaste managementbusiness.industryMechanical EngineeringDomestic heatingBuilding and ConstructionPollutionRenewable energyGeneral EnergyItalyElectricitybusinessEnergy
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Considerations on factors affecting biochar densification behavior based on a multiparameter model

2021

The optimization of upscaled biochar pelleting is limited by lack of knowledge regarding the effects of process parameters. A multiparameter model, coupled to a single pellet press unit, was for the first time applied to biochar production to predict the upscaled biochar pelleting process behavior. The model permits to estimate in a time and cost-effective way how the die friction forces, quantified through the pellet exiting pressure, are affected by the key process parameters. It was observed that to achieve acceptably low exiting pressures (in the order of 100 MPa), it was critical to produce biochar at high temperatures (e.g. 600 °C). Addition of water as a binder is also beneficial, wh…

Materials sciencebusiness.product_category020209 energyPelletsPelletization02 engineering and technologyIndustrial and Manufacturing Engineeringchemistry.chemical_compound020401 chemical engineeringPyrolysis oilPelletBiocharDensification0202 electrical engineering electronic engineering information engineering0204 chemical engineeringElectrical and Electronic EngineeringCivil and Structural EngineeringMechanical EngineeringModelingBuilding and ConstructionPelletizingTorrefactionPulp and paper industryPollutionVDP::Teknologi: 500BiocharPyrolysis oilGeneral EnergyCompressive strengthchemistryDie (manufacturing)businessPyrolysis
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Analytical Study of Raw Materials of Zinc Oxide Used for Enamels on Industrial Ceramics: Quantitative Analysis of Zinc, Lead, and Sulfur in These Sam…

2006

Abstract An analytical study is carried out to optimize X‐ray fluorescence (XRF) and flame atomic absorption spectrometry (FAAS) quantitative analysis of Zn, Pb, and S in ZnO samples commonly used to obtain industrial ceramic enamels. Pb and S in the raw materials often contaminate ZnO and are very detrimental in industrial applications. Thus, very accurate analytical determination of these elements in ceramic samples is extremely important. First of all, a mineralogical study by X‐ray diffraction (XRD) on the different components in these raw materials and the materials produced during the firing process is performed in order to establish the mineral forms in a reference sample for analysi…

PelletsAnalytical chemistrychemistry.chemical_elementX-ray fluorescenceZincRaw materialMass spectrometrySulfurAtomic and Molecular Physics and OpticsAnalytical Chemistrychemistryvisual_artvisual_art.visual_art_mediumCeramicQuantitative analysis (chemistry)SpectroscopySpectroscopy Letters
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EPR RESPONSE OF PHENOLIC SOLID STATE PELLETS FOR DOSIMETRY OF RADIO- THERAPEUTIC PHOTON AND ELECTRON BEAMS

2020

EPR phenolicpellets photon and electron beams
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Volatile compounds extracted from polypropylene sheets by hot water :influence of the temperature of sheets injection

1993

A study was made on polypropylene (PP) pellets degraded and not degraded and pointed out the presence and olfactive importance of volatile components extracted from PP pellets by hot water. Plastic packaging materials correspond to a further step of manufacturing: the injection step, and this is often conducted at high temperature. PP (not degraded) and PP-CR (degraded) were transformed into sheets at several temperatures; Lickens-Nickerson extracts were made and allowed the quantification of volatile compounds already identified. A statistical analysis showed that temperature was a very significant parameter. An increasing injection temperature (275 or 300°C° creates increasing quantities …

PolypropyleneMaterials sciencePolymers and Plastics010405 organic chemistry[SDV]Life Sciences [q-bio]010401 analytical chemistryOrganolepticPelletsGeneral Chemistry01 natural sciences0104 chemical sciencesSurfaces Coatings and Films[SDV] Life Sciences [q-bio]chemistry.chemical_compoundchemistryChemical engineeringOdorMaterials ChemistrySPECTROMETRIE IROrganic chemistryStatistical analysisPlastic packagingComputingMilieux_MISCELLANEOUS
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Who eats first? Uptake of pellet bait by target and non-target species

2002

House mice (Mus domesticus) are an important vertebrate pest in Australian agriculture. We studied the uptake of non-toxic placebo bait pellets targeted on house mice from bait stations in the grain-growing region of southeastern Australia. Bait stations allowed access for either ants; ants and mice or ants, mice, and birds. Soy meal bait pellets offered in December were of low preference for both ants and mice, but were eaten by birds in one study plot. In January, there were no differences between bait stations in the amount of wheat bait pellets removed indicating that the pellet bait had been primarily removed by ants. Most pellet bait was removed during the first 12 h after distributio…

Integrated pest managementbiologyEcologyPelletsfood and beveragesmacromolecular substancesPesticidebiology.organism_classificationMicrobiologyHouse mouseBiomaterialsAnimal scienceparasitic diseasesPelletRodenticidePEST analysisHouse micehuman activitiesWaste Management and Disposalgeographic locationsInternational Biodeterioration & Biodegradation
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