Search results for "Thermal"

showing 10 items of 3576 documents

Geochemical processes assessed by Rare Earth Elements fractionation at "Laguna Verde" acidic-sulphate crater lake (Azufral volcano, Colombia)

2017

Abstract The geochemical behaviour of major elements, Fe, Al, Mn, and Rare Earth Elements (REE) was investigated in the “Laguna Verde” acidic crater lake of Azufral volcano (Colombia). The cold lake water (T close to 10 °C) is sulphate-dominated, due to absorption and oxidation of H2S (pH 2.1–2.7, Eh 196–260 mV), and Na-enriched (Total Dissolved Solids 0.79 g L−1). The total amount of REE dissolved in the lake ranges from 3.3 to 9.1 ppb. The REE patterns normalized to the local rocks show a Light Rare Earth Elements (LREE) depletion quite constant in the 15 samples. Similar patterns were already found in the acidic sulphate springs of Nevado del Ruiz volcano-hydrothermal system, caused by t…

Alunite precipitation010504 meteorology & atmospheric sciencesGeochemistryMineralogyengineering.material010502 geochemistry & geophysics01 natural sciencesHydrothermal circulationRare Earth ElementVolcano-hydrothermal systemImpact craterGeochemistry and PetrologyCrater lakeJarositeEnvironmental ChemistryPrecipitation0105 earth and related environmental sciencesgeographygeography.geographical_feature_categoryAcidic crater lakeAlunitePollutionVolcanoLight Rare Earth Elements depletionengineeringSeawaterGeology
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Spatial and temporal distribution of ooids along a Jurassic carbonate ramp: Amellago outcrop transect, High-Atlas, Morocco

2010

Carbonate ramp systems are widespread throughout the geological record, but very few areas have seismic-scale, continuous and structurally undeformed outcrops that allow reliable interpretation of facies distributions and stacking patterns. The Amellago outcrop shows the detailed depositional and stratigraphic relationships of an ooid-dominated ramp system that is almost completely exposed along a dip profile (37 km long and 1000 m thick) in the Lower to Middle Jurassic of the southern High Atlas, Morocco. Ammonite and brachiopod fauna provide excellent biostratigraphic control on small scale stacking patterns. At Amellago, the evolution of depositional environments is evident at different …

AmmoniteOutcropGeologyOcean Engineeringlanguage.human_languageThermal subsidenceSedimentary depositional environmentPaleontologyTectonicsFacieslanguageTransgressiveSea levelGeologyWater Science and TechnologyGeological Society, London, Special Publications
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Synthesis of Peroxyapatite by Hydrothermal Processing

2014

Peroxide ions in apatite provides an additional resource for imparting an antibacterial capability in apatite. A hydrothermal process has been developed for including peroxide ions into the apatite lattice. Three oxygen generation compounds, hydrogen peroxide, ammonium persulphate and paracetic acid were investigated for peroxyapatite generation. Hydrogen peroxide provides the highest peroxide containing apatite. Both the oxygen generation and the apatite lattice formation represented the two critical factors for producing peroxyapatite. Unlike with high temperature processing, the cooling rate did not influence the retained peroxide content. This new process provides a building block for i…

Ammonium persulphateMechanical EngineeringInorganic chemistrychemistry.chemical_elementhydrogen peroxidePeroxideOxygenApatiteHydrothermal circulationIonantibacterialchemistry.chemical_compoundCooling ratechemistryhydrothermal processingMechanics of Materialsvisual_artvisual_art.visual_art_mediumGeneral Materials ScienceHydrogen peroxideperoxyapatiteKey Engineering Materials
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Decomposition of ammonium sulfate residue in a high solid/gas ratio suspension state with an industrial-scale reactor system (production line)

2015

Abstract Ammonium sulfate residue is a particulate solid and is produced during the manufacture of ammonium sulfate fertilizer. The residue used in this study contained a large portion of calcium carbonate, from which active lime (CaO) was recovered via thermal decomposition. We used a purpose-built device to decompose the residue in a semi-suspension state. We found that CaO had the highest activity when residue was decomposed at 850–900 °C. Our experiments indicated that ammonium sulfate residue should be decomposed in a suspension state to produce active CaO. Based on our laboratory test findings, an industrial-scale production line with a high solid/gas ratio in a suspension state was d…

Ammonium sulfateGeneral Chemical EngineeringInorganic chemistryThermal decompositionengineering.materialParticulatesDecompositionchemistry.chemical_compoundResidue (chemistry)Calcium carbonatechemistryengineeringGeneral Materials ScienceCitric acidLimeParticuology
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Correlated barrier hopping in NiO films

1991

The ac conduction in NiO films has been investigated in the frequency range 10 Hz < v < 10^9 Hz and at temperatures between 10 and 300 K. The frequency and the temperature dependence of the electrical conductivity can be consistently explained within a model developed for the mechanism of charge transfer in amorphous semiconductors which proposes that charge carriers hop over potential barriers between defect sites, the height of the barriers being correlated with the intersite separation.

Amorphous semiconductorsNickelMaterials scienceCondensed matter physicschemistryOver potentialElectrical resistivity and conductivitySemiconductor materialsNon-blocking I/Ochemistry.chemical_elementCharge carrierThermal conductionPhysical Review B
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High-efficiency silicon-compatible photodetectors based on Ge quantum dots

2011

We report on high responsivity, broadband metal/insulator/semiconductor photodetectors with amorphous Ge quantum dots (a-Ge QDs) as the active absorbers embedded in a silicon dioxide matrix. Spectral responsivities between 1-4 A/W are achieved in the 500-900 nm wavelength range with internal quantum efficiencies (IQEs) as high as ∼700%. We investigate the role of a-Ge QDs in the photocurrent generation and explain the high IQE as a result of transport mechanisms via photoexcited QDs. These results suggest that a-Ge QDs are promising for high-performance integrated optoelectronic devices that are fully compatible with silicon technology in terms of fabrication and thermal budget. © 2011 Amer…

Amorphous siliconMaterials scienceThermal budgetPhysics and Astronomy (miscellaneous)SiliconSilicon TechnologieResponsivitychemistry.chemical_elementSettore ING-INF/01 - Elettronicachemistry.chemical_compoundResponsivityMetal/insulator/semiconductorGe quantum dotWavelength ranges Amorphous siliconPhotocurrent generationPhotodetectorOptoelectronic devicePhotocurrentGermaniumbusiness.industrySemiconductor quantum dotInternal quantum efficiencymatrixTRANSPORTSemiconductorNANOCRYSTALSSilica Quantum efficiencychemistryQuantum dot laserQuantum dotOptoelectronicsQuantum efficiencyTransport mechanismGAINbusinessNANOCRYSTALS TRANSPORT GAINFully compatibleHigh efficiency
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Solution processable piperazine and triphenyl moiety containing non-symmetric bis-styryl-DWK type molecular glasses with light-emitting and amplified…

2018

A series of 2,6-bis-styryl-4H-pyran-4-ylidene fragment containing glassy organic compounds with chemically stable bonding of amorphous phase promoting bulky triphenyl moieties through piperazine structural fragment (DWK-T dyes) in a form of 2-(5,5,5-triphenylpentyl)piperazin-1-yl)styryl)-substituent have been synthesized and investigated as the potential gain medium component for organic solid state laser applications. Physical properties of the dyes vary and are mostly depending from the other styryl-substituent attached to the 4H-pyran-4-ylidene backbone fragment in 6-position. Thermal stability of synthesized dyes is above 312°C with the glass transitions from 97°C to 109°C. Obtained nea…

Amplified spontaneous emissionActive laser mediumDye laserPhotoluminescenceMaterials science02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnologyPhotochemistry01 natural sciences0104 chemical sciencesPiperazinechemistry.chemical_compoundchemistryCovalent bondMoietyThermal stability0210 nano-technologyOrganic Light Emitting Materials and Devices XXII
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Glass-forming derivatives of 2-cyano-2-(4H-pyran-4-ylidene) acetate for light-amplification systems

2019

Abstract A series of 2-cyano-2-(4H-pyran-4-ylidene) acetate derivatives with triphenyl and 9H-carbazole moieties were synthesized and investigated, mostly for potential applications in organic solid state lasers. Synthesized compounds show remarkable amorphous film formation ability, tunable thermal properties (thermal stability varies from 190 °C to 387 °C and glass transition temperature from 94 °C up to 141 °C) with light absorption from 400 nm to 600 nm and photoluminescence from 600 nm up to 800 nm. Dyes with incorporated mono-styryl- electron donating fragment (KTB, KTBC and KTB3K) showed higher photoluminescence quantum yield (PLQY) (from 16% up to 23%), significantly lower amplified…

Amplified spontaneous emissionDye laserPhotoluminescenceMaterials scienceProcess Chemistry and TechnologyGeneral Chemical EngineeringQuantum yield02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnologyPhotochemistryLaser01 natural sciences0104 chemical sciencesAmorphous solidlaw.inventionlawThermal stability0210 nano-technologyGlass transitionDyes and Pigments
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Amplified Spontaneous Emission Properties of Solution Processed CsPbBr3 Perovskite Thin Films

2017

Metal halide perovskites are currently emerging as highly promising optoelectronic materials. It has been recently demonstrated that fully inorganic solution processed CsPbBr3 perovskite thin films show good electroluminescence properties combined with high thermal stability. In this work, we investigate in details the amplified spontaneous emission (ASE) properties of CsPbBr3 perovskite thin films, as a function of the temperature and the trap density, modified by changing the CsBr-PbBr2 precursor concentration. ASE is observed in samples from both CsBr-rich solution (low trap density) and equimolar solution (higher trap density), up to about 150 K, with a minimum threshold of 26 and 29 mu…

Amplified spontaneous emissionMaterials scienceExcitonAnalytical chemistryHalide02 engineering and technologyPerovskites Amplified Spontaneous EmissionElectroluminescence010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsMetalGeneral Energyvisual_artvisual_art.visual_art_mediumThermal stabilityPhysical and Theoretical ChemistryThin film0210 nano-technologyPerovskite (structure)The Journal of Physical Chemistry C
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K-means Clustering to Study How Student Reasoning Lines Can Be Modified by a Learning Activity Based on Feynman’s Unifying Approach

2017

Background:Research in Science Education has shown that often students need to learn how to identify differences and similarities between descriptive and explicative models. The development and use of explicative skills in the field of thermal science has always been a difficult objective to reach. A way to develop analogical reasoning is to use in Science Education unifying conceptual frameworks.Material and methods:A questionnaire containing six open-ended questions on thermally activated phenomena was administered to the students before instruction. A second one, similar but focused on different physical content was administered after instruction. Responses were analysed using k-means Cl…

Analogical reasoningScience instructionMechanism (biology)Computer scienceLogical reasoningBoltzmann Factor evaluation quantitative data analysis in education k-means clustering thermally-activated phenomenaSettore FIS/08 - Didattica E Storia Della FisicaApplied Mathematics05 social sciencesk-means clustering050301 educationScience educationField (computer science)Educationsymbols.namesake0502 economics and businesssymbolsMathematics educationFeynman diagram0503 education050203 business & managementEURASIA Journal of Mathematics, Science and Technology Education
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