Search results for "gas [meson]"

showing 10 items of 409 documents

CO2 degassing at La Solfatara volcano (Phlegrean Fields): Processes affecting d13C and d18O of soil CO2

2010

Abstract The soil CO2 degassing is a ected by processes of isotope exchange and fractionation during transport across the soil, which can deeply modify the pristine isotope composition. This has been observed in 10 the Solfatara volcano, upon a eld survey of 110 points, where the CO2 ux was measured, together with temperature, CO2 concentra- tion and oxygen and carbon isotopes within the soil. Furthermore, in some selected sites, the measurements were made at di erent depths, in order to analyze vertical gradients. Oxygen isotope composition 15 appears controlled by exchange with soil water (either meteoric or fumarolic condensate), due to the fast kinetic of the isotopic equilib- rium betw…

CO2 flux dusty gas modelSettore GEO/08 - Geochimica E Vulcanologia
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Validating an apple dry matter production model with whole canopy gas exchange measurements in the field

1999

The simplified apple dry matter production model developed by Lakso and Johnson (1990) was modified by inputing tree-specific parameters from a study of seasonal growth and gas exchange of 4-year-old Empire/M.9 apple trees, and light and temperature response curves developed for Empire apple organs. Measurements of the seasonal trend of diurnal net C02 and canopy water vapor exchange were made at intervals on three four-year-old 'Empire'/M.9 slender spindle apple trees in the orchard from 10 days after bloom until 25 days after harvest. The tree canopies were enclosed in clear plastic "balloon- type" chambers (similar to Corelli and Magnanini, 1993) that was monitored continuously for more …

CanopyAgronomyField (physics)Production modelLight Malus domestica Borkh Photosynthesis Respiration Seasonal gas exchange TemperatureEnvironmental scienceDry matterHorticulture
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Development of a Sensor for Continuous and Accurate Monitoring of Air Flow for Open-System Whole Canopy Gas-Exchange Measurements

2007

The research describes the development and set-up of a simple and accurate solid-state device for continuous monitoring of airflow forced into an open-flow gas-exchange chamber for whole-canopy transpiration and photosynthesis measurements. The ventilation system was formed by a centrifugal fan powered by an electric motor and a PVC pipe (0.193 m inner diameter). To damp airflow turbulence, 50 cm of the main pipe was filled with a bundle of smaller PVC pipes (3 cm inner diameter). The measurement principle of the sensor is the thermal balance of an electrically heated copper plate compared to an unheated one. Calibration of the sensor was performed by two independent methods: gas dilution (…

CanopyDevelopment (topology)Natural resources exploration gas exchange plant growthAirflowEnvironmental scienceHorticultureOpen system (systems theory)Remote sensing
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Current advancement in electrochemical analysis of neurotransmitters in biological fluids

2017

Abstract Analysis of neurotransmitters is useful for the diagnosis of central nervous system diseases. This review gives a general view of recent advances in the development of electrochemical sensors for detection/determination of neurotransmitters. The purpose of the review is to provide useful insights in terms of ( a ) choice of materials, ( b ) methods/techniques preferably applied, ( c ) immobilization procedures, and ( d ) other practical aspects. Following an introduction into the field, we give a short account on the principle and general types of electrochemical sensors, and then treat sensing methods for neurotransmitters. It is subdivided into sections on ( i ) Dopamine ( ii ) A…

Chemistry010401 analytical chemistryNanotechnology02 engineering and technologyResearch opportunities021001 nanoscience & nanotechnologyElectrochemistry01 natural sciences0104 chemical sciencesAnalytical ChemistryElectrochemical gas sensorBiochemistryBiological fluids0210 nano-technologySpectroscopyTrAC Trends in Analytical Chemistry
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Selective CO2 adsorption by a triazacyclononane-bridged microporous metal-organic framework.

2011

Metal-organic frameworks constructed by self-assembly of metal ions and organic linkers have recently been of great interest in the preparation of porous hybrid materials with a wide variety of functions. Despite much research in this area and the large choice of building blocks used to fine-tune pore size and structure, it remains a challenge to synthesise frameworks composed of polyamines to tailor the porosity and adsorption properties for CO(2). Herein, we describe a rigid and microporous three-dimensional metal-organic framework with the formula [Zn(2)(L)(H(2)O)]Cl (L=1,4,7-tris(4-carboxybenzyl)-1,4,7-triazacyclononane) synthesised in a one-pot solvothermal reaction between zinc ions a…

ChemistryMetal ions in aqueous solutionOrganic ChemistryInorganic chemistrySorptionGeneral ChemistryMicroporous materialCatalysisAdsorptionChemical engineeringMetal-organic frameworkGas separationHybrid materialSelectivityChemistry (Weinheim an der Bergstrasse, Germany)
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Photocatalytic and Catalytic Reactions in Gas–Solid and in Liquid–Solid Systems

2019

Abstract Heterogeneous photocatalytic and thermal-catalytic reactions are here presented focusing the differences and similarities between the two processes. When possible, the comparison was made for the same chemical reaction in the presence of an inorganic material playing the role of both catalyst or/and photocatalyst. Several examples are presented where a catalytic reaction can occur at milder experimental conditions and, particularly, at lower temperature when the system is also irradiated by UV and/or visible light. The differences in mechanistic aspects, conversions, and selectivities between catalytic and photocatalytic reactions will be also considered because these occurrences a…

ChemistryPhotocatalysisCatalytic versus photocatalytic reactions thermal-catalytic reactions photo-assisted reactions partial (photo)oxidation reactionsSettore CHIM/07 - Fondamenti Chimici Delle TecnologieActivation energyIrradiationLiquid solidGas solidPhotochemistryChemical reactionVisible spectrumCatalysis
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Preparation of Pd coated anodic alumina membranes for gas separation media

2007

Different procedures of Pd electroless deposition onto anodic alumina membranes were investigated to form a dense metal layer covering pores. The main difficulty was related to the amorphous nature of anodic alumina membranes, determining low chemical stability in solutions at pH > 9, where Pd plating works more efficiently. As a consequence, it was necessary to find the operative conditions allowing Pd deposition without damaging the membrane: to reduce alumina dissolution, the plating bath was buffered at pH 8.5 by addition of either NaHCO 3 or Na 2 B 4 O 7 ·H 2 O. Acceptable conversion of Pd was found after a deposition time of 3 min. Single and multiple deposition steps (each lasting 3 …

ChromatographyAluminaAmorphous materialsDissolutionPalladiumPlatingRenewable Energy Sustainability and the EnvironmentChemistryCondensed Matter PhysicsSurfaces Coatings and FilmsElectronic Optical and Magnetic MaterialsAmorphous solidMembraneSettore ING-IND/23 - Chimica Fisica ApplicataChemical engineeringPlatingMaterials ChemistryElectrochemistryGas separationSolubilityDissolutionDeposition (chemistry)Layer (electronics)
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Ion-exchange voltammetry at a surfactant-doped electrode: model of mass transfer kinetics to an anionic surface-charged electrode and its application…

2000

cited By 10; International audience; A theoretical model of mass transfer kinetics was developed for investigating the accumulation of cationic compounds at an anionic surfactant-doped screen-printed electrode. It was extended to an enzyme-generated cationic product for the indirect determination of alkaline phosphatase (AP). The model takes into account the analyte depletion, the kinetics of the ion-exchange reaction-diffusion and the kinetics of the enzymatic reaction. The relationship between the ion-exchange voltammetric anodic peak current and the enzyme incubation/accumulation time for a given concentration of AP was established and the validity of the theoretical model was verified e…

ChromatographyIon exchangeGeneral Chemical EngineeringKineticsInorganic chemistryCationic polymerizationSubstrate (chemistry)02 engineering and technologyBuffer solution010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesAnalytical ChemistryElectrochemical gas sensorchemistry.chemical_compoundchemistryElectrodeElectrochemistry[CHIM]Chemical Sciences0210 nano-technologyVoltammetry
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Dynamics of mild strombolian activity on Mt. Etna

2015

Abstract Here we report the first measurements of gas masses released during a rare period of strombolian activity at the Bocca Nuova crater, Mt. Etna, Sicily. UV camera data acquired for 195 events over an ≈ 27 minute period (27th July 2012) indicate erupted SO2 masses ranging from ≈ 0.1 to ≈ 14 kg per event, with corresponding total gas masses of ≈ 0.1 to 74 kg. Thus, the activity was characterised by more frequent and smaller events than typically associated with strombolian activity on volcanoes such as Stromboli. Events releasing larger measured gas masses were followed by relatively long repose periods before the following burst, a feature not previously reported on from gas measureme…

Coalescence (physics)Ultra-violet imaginggeographygeography.geographical_feature_categoryTrailing wake interactionCoalescence; Mild strombolian activity; Slug dynamics; Trailing wake interaction; Ultra-violet imaging; Volcanic gas measurements; Geochemistry and Petrology; GeophysicsVolcanic explosivity indexCoalescenceVolcanic gas measurementsCoalescence; Mild strombolian activity; Slug dynamics; Trailing wake interaction; Ultra-violet imaging; Volcanic gas measurements; Geophysics; Geochemistry and PetrologyStrombolian eruptionSlug dynamicsGeophysicsVolcanoImpact craterGeochemistry and PetrologyGas slugMild formGeologySeismologyMild strombolian activity
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2017

Strombolian volcanism is a ubiquitous form of activity, driven by the ascent and bursting of bubbles of slug morphology. Whilst considerable attention has been devoted to understanding the behaviour of individual slugs in this regime, relatively little is known about how inter-slug interactions modify flow conditions. Recently, we reported on high temporal frequency strombolian activity on Etna, in which the larger erupted slug masses were followed by longer intervals before the following explosion than the smaller bursts (Pering et al., 2015). We hypothesised that this behaviour arose from the coalescence of ascending slugs causing a prolonged lag before arrival of the next distinct bubble…

Coalescence (physics)geographygeography.geographical_feature_category010504 meteorology & atmospheric sciencesbiologySlugBubbleVolcanismMechanics010502 geochemistry & geophysicsbiology.organism_classification01 natural sciencesStrombolian eruptionGeophysicsElectrical conduitVolcanoGeochemistry and PetrologyGas slugSeismologyGeology0105 earth and related environmental sciencesJournal of Volcanology and Geothermal Research
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