Search results for "thermal [correlation function]"

showing 10 items of 1923 documents

Zirconium–hafnium and rare earth element signatures discriminating the effect of atmospheric fallout from hydrothermal input in volcanic lake water

2016

The geochemical behaviour of Rare Earth Elements, Zr and Hf was investigated in the thermal waters of Nevado del Ruiz volcano system. A wide range of pH, between 1.0 and 8.8, characterizes these fluids. The acidicwaters are sulphate dominatedwith different Cl/SO4 ratios. The important role of the pH and the ionic complexes for the distribution of REE, Zr a nd Hf in the aqueous phase was evidenced. The pH rules the precipitation of authigenic Fe and Al oxyhydroxides producing changes in REE, Zr, Hf amounts and strong anomalies of Cerium. The precipitation of alunite and jarosite removes LREE from the solution, changing the REE distribution in acidic waters. Y-Ho and Zr-Hf (twin pairs) have a…

Rare Earth Elements010504 meteorology & atmospheric sciencesGeochemistrychemistry.chemical_element010502 geochemistry & geophysics01 natural sciencesHydrothermal circulationLakeRare earth elements Zirconium Hafnium CO2-rich waters Lake Aeolian inputGeochemistry and Petrology[SDU.STU.GC]Sciences of the Universe [physics]/Earth Sciences/GeochemistryPrecipitation0105 earth and related environmental sciencesgeographyZirconiumgeography.geographical_feature_categoryCO 2 -rich watersRare-earth elementGeologyAuthigenicHafniumAeolian inputVolcanochemistryZirconiumOil shaleGeologyHafnium
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Discrimination between effects induced by microbial activity and water-rock interactions under hydrothermal conditions according to REE behaviour

2013

AbstractRare earth elements (REE) were investigated in siliceous stromatolites forming in the Specchio di Venere Lake on Pantelleria Island. Chondrite-normalised patterns show significant La enrichments and Eu depletions suggesting that fluids involved in stromatolite growth experienced strong rock-water interactions under hydrothermal conditions. At the same time, enrichments in heavy REE (HREE) with respect to intermediate REE (MREE) suggest that hydrothermal fluids interacted with microbial mats during deposition of the stromatolites. The above-mentioned features suggest that rock-water interactions and bacterial activity were simultaneously recorded in the REE patterns of stromatolites,…

Rare Earth ElementsbiologyRock-water interactionsStromatolites; Rare Earth Elements; Bacterial activity; Rock-water interactions Hydrothermal systemRare earthGeochemistryMineralogyEarth and Planetary Sciences(all)General Medicinebiology.organism_classificationHydrothermal circulationStromatoliteRare Earth ElementHydrothermal systemDeposition (aerosol physics)StromatolitesStromatoliteBacterial activityRock-water interactions Hydrothermal systemMicrobial matBacterial activityGeology
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The effect of trivalent framework heteroatoms in Cu-CHA on the Selective Catalytic Reduction of NO

2021

Abstract The effect of the trivalent framework atoms (Si4+/M3+ = 13-105) in Cu exchanged CHA-type zeolites was investigated for the selective catalytic reduction of NO with NH3. While the increased hydrophobicity of B-CHA compared to Al-CHA could make it a good candidate for low temperature SCR, the material was too unstable under reaction conditions and the exchanged Cu2+ did not remain isolated. Consequently a lower activity and selectivity than for Al-CHA were observed. Ga-CHA on the other hand showed a similar Cu2+ speciation as Al-CHA at similar Si4+/M3+ ratios. The difference in catalytic activity was remarkably small. While Ga-CHA was less stable upon hydrothermal aging, this was mar…

Reaction conditionsChemistryProcess Chemistry and Technologymedia_common.quotation_subjectHeteroatomInorganic chemistrySelective catalytic reductionCatalysisHydrothermal circulationCatalysisSpeciationSelectivityZeolitemedia_commonApplied Catalysis A: General
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Study of the thermal decomposition of bromazepan complexes with Co(II), Ni(II), Cu(II) and Zn(II)

1984

Abstract The thermal behaviour of complexes of bromazepan with Co(II), Ni(II), Cu(II) and Zn(II) was studied by thermogravimetry (TG) and differential thermal analysis (DTA). The complexes decompose in two steps: dehydration and decomposition. A correlation between the dehydration temperatures of MB2Xn and the coordinating ability of X is observed.

Reaction mechanismChemistryThermal decompositionInorganic chemistryCondensed Matter Physicsmedicine.diseaseDecompositionThermogravimetryDifferential thermal analysisThermalmedicineDehydrationPhysical and Theoretical ChemistryInstrumentationPyrolysisThermochimica Acta
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Fifty Years of PMV Model: Reliability, Implementation and Design of Software for Its Calculation

2019

In most countries, PMV is the reference index for the assessment of thermal comfort conditions in mechanically conditioned environments. It is also the basis to settle input values of the operative temperature for heating and cooling load calculations, sizing of equipment, and energy calculations according to EN 16798-1 and 16798-2 Standards. Over the years, great effort has been spent to study the reliability of PMV, whereas few investigations were addressed to its calculation. To study this issue, the most significant apps devoted to its calculation have been compared with a reference software compliant with EN ISO 7730 and the well-known ASHRAE Thermal Comfort Tool. It has been revealed …

Reference softwareAtmospheric ScienceOperative temperature010504 meteorology & atmospheric sciencesComputer scienceCooling load0211 other engineering and technologies02 engineering and technologylcsh:QC851-999Thermal comfortEnvironmental Science (miscellaneous)01 natural sciencesBuilding simulationSoftwareASHRAE 90.1021108 energyReliability (statistics)App; Building simulation; Comfort indices; PMV; Software; Thermal comfort0105 earth and related environmental sciencesbusiness.industryThermal comfortSizingReliability engineeringPMVPMV comfort indices thermal comfort software app building simulationlcsh:Meteorology. ClimatologyAppbusinessComfort indicesSoftware
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Performance Enhancement of Vapour-Compression Refrigeration Systems Using Nanoparticles: An Experimental Study

2021

In recent years, the development and characterization of new refrigerants with higher energetic efficiency have gained considerable interest [1], with a particular emphasis on the energetic performance of suitable replacements. Nanofluids have been proposed as possible alternative due to their role in enhancing the thermophysical proprieties of traditional refrigerants [2]. The comprehensive review in [2] suggests that thermal conductivity of nanofluid increases with temperature and volume concentration, but it is dependent on nanoparticle size distribution; specific heat is also increased if nanoparticles are added to the refrigerant.

RefrigerantNanofluidMaterials scienceThermal conductivitySpecific heatChemical engineeringRefrigerationNanoparticlePerformance enhancementCompression (physics)
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Advances in Anodic Alumina Membranes-based fuel cell: CsH2PO4 pore-filler as proton conductor at room temperature

2009

Abstract Anodic alumina membranes (AAM) filled with cesium hydrogen phosphate proton conductor have been tested as inorganic composite electrolyte for hydrogen–oxygen thin film (≤50 μm) fuel cell (TFFC) working at low temperatures (25 °C), low humidity ( T gas  = 25 °C) and low Pt loading (1 mg cm −2 ). Single module TFFC delivering a peak power of around 15–27 mW cm −2 , with open circuit voltage (OCV) of about 0.9 V and short circuit current density in the range 80–160 mA cm −2 have been fabricated. At variance with pure solid acid electrolytes showing reproducibility problems due to the scarce mechanical resistance, the presence of porous alumina support allowed to replicate similar fuel…

Renewable Energy Sustainability and the EnvironmentChemistryOpen-circuit voltageAnodic alumina membranes Cesium hydrogen phosphate Composite proton conductors Pore filling Thin film fuel cellAnalytical chemistryEnergy Engineering and Power TechnologyElectrolyteElectrochemistryDielectric spectroscopySettore ING-IND/23 - Chimica Fisica ApplicataChemical engineeringDifferential thermal analysisElectrical and Electronic EngineeringPhysical and Theoretical ChemistryThin filmShort circuitCesium hydrogen phosphate Anodic alumina membranes Pore filling Composite proton conductors Thin film fuel cellProton conductor
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Transformation synthesis of aluminosilicate SSZ-39 zeolite from ZSM-5 and beta zeolite

2019

Aluminosilicate SSZ-39 zeolite has been successfully prepared by transformation from ZSM-5 and beta zeolite in the presence of N,N-diethyl-cis-2,6-dimethylpiperidinium hydroxide (DMPOH) under hydrothermal conditions. Catalytic tests in the selective catalytic reduction of NOx with NH3 (NH3-SCR) show that the copper-exchanged products synthesized from the interzeolite transformation exhibit excellent catalytic performance.

Renewable Energy Sustainability and the EnvironmentChemistrySelective catalytic reduction02 engineering and technologyGeneral Chemistry021001 nanoscience & nanotechnologyHydrothermal circulationCatalysischemistry.chemical_compoundChemical engineeringAluminosilicateHydroxideGeneral Materials ScienceZSM-50210 nano-technologyZeoliteNOxJournal of Materials Chemistry A
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Fracture Toughness of PIR Foams Produced from Renewable Resources

2012

Rigid low-density closed-cell polyisocyanurate (PIR) foams are used primarily as a thermal insulation material. Traditionally, they are manufactured from constituents produced by petrochemical industry. Introducing renewable materials in PIR formulation brings definite economical and environmental benefits. Fracture toughness of PIR foams obtained from renewable resources (with the polyol system comprising up to 80% of rapeseed oil esters) and petrochemical PIR foams has been characterized experimentally, by compact tension tests, for mode I crack propagation along the rise direction of the foams.

Renewable materialsbusiness.product_categoryMaterials sciencebusiness.industryMechanical EngineeringPolyisocyanurateFracture mechanicsPetrochemicalFracture toughnessMechanics of MaterialsThermal insulationGeneral Materials ScienceComposite materialbusinessRenewable resourceKey Engineering Materials
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Reducing electric and thermal energy needs in buildings by using innovative envelope materials - Laboratory results of bio-composites embodying tomat…

2018

The life style of building occupants is continuously arising towards conditions that are more comfortable involving, on turn, the growing of the electric energy consumptions for climatization purposes. This calls for the improvement of the efficiencies of equipment along with environmental performance of building materials. Laboratory analyses of samples of mixed materials, utilizing tomato stems harvested in Sicily and Cataluña, have been conducted Thermal conductance and mechanical properties have been detected for different rates of bio-component and inert materials. First results of the thermal properties seem to situate such bio-composites among the insulating building materials, for a…

Renewable thermal insulation materialSettore ING-IND/11 - Fisica Tecnica AmbientaleThermal conductivityUrban agriculture wasteTomato plant stem
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