Search results for "Pile à combustible"

showing 4 items of 4 documents

Protonic ceramic fuel cell : elaboration and characterization. Investigation of the BaZr0.8Y0.2O3-d electrolyte by electrochemical impedance spectros…

2021

One of the current global challenges is to find novel, clean and efficient techniques for the energy production. The use of electrochemical cells and hydrogen is one of the solutions. These cells convert the excess energy produced by conventional systems into hydrogen by steam electrolysis. The hydrogen can be stored and transformed into electricity when needed in the fuel cell mode. Among the different electrochemical cells, protonic ceramic electrochemical cells have attracted much attention due to their high efficiency at intermediate temperature (400 – 600 °C). In addition, these systems offer the advantage of not diluting the fuel in electrolysis mode. This thesis work focuses on the e…

ConductivityConductivité[CHIM.MATE] Chemical Sciences/Material chemistryProtonic ceramic fuel cellSpectroscopie d'impédance électrochimiqueSynthèse hydrothermaleHydrothermal synthesisBaZr0.8Y0.2O3-DPile à combustible à céramique protoniqueElectrochemical impedance spectroscopy
researchProduct

Étude par microscopie électronique et spectroscopie de films minces catalytiques pour micro piles à combustibles

2016

Předložená dizertační práce se zabývá studiem nových katalyzátorů na bázi kov-oxid vhodných pro použití v palivových článcích na straně anody. Platinou dopovaný oxid ceru připravený magnetronovým naprašováním ve formě tenkých vrstev na uhlíkových mezivrstvách nesených křemíkovým substrátem byl zkoumán prostřednictvím mikroskopických a spektroskopických metod. Vliv složení uhlíkového nosiče (a-C a CNx filmy), depozičního času CeOx vrstvy a dalších depozičních parametrů, např. depoziční rychlosti, složení pracovní atmosféry a Pt koncentrace na morfologii Pt-CeOx vrstev byl studován převážně pomocí transmisní elektronové mikroskopie (TEM). Získané výsledky ukazují, že vhodnou kombinací depozič…

Palivové článkyFuel cellTransmisní elektronový mikroskopCer oxidCerium oxidePulvérisation cathodique magnétron[CHIM.THEO] Chemical Sciences/Theoretical and/or physical chemistryMagnetronové naprašováníOxyde de cériumPlatinePile à combustiblePlatinaTransmission Electron MicroscopyMicroscopie électronique en transmissionMagnetron sputteringPlatinum
researchProduct

Development of electrodes materials for SOFC fed by natural gas / biogas. Applications to "pre-reforming" and "single-chamber" concepts

2010

Solid Oxide Fuel Cell is a device for “clean” electricity production from chemical energy. The new configuration called “single-chamber” seems to be very attractive with several advantages over bi-chamber conventional configuration: easier manufacturing, lowering of working temperature, possible use of hydrocarbons as fuel… Such configuration involves the development of new electrode materials satisfying new requirements. The evaluation of 7 potential cathode materials through several characterizations has shown that a compromise has to be found since one material does not exhibit all the requested features. A library of 15 supported catalysts (3 metals and 5 supports) was developed. These …

Résistance de polarisation[ PHYS.COND.CM-GEN ] Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other][CHIM.OTHE] Chemical Sciences/Other[PHYS.COND.CM-GEN] Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other][PHYS.COND.CM-GEN]Physics [physics]/Condensed Matter [cond-mat]/Other [cond-mat.other][ CHIM.OTHE ] Chemical Sciences/OtherSolid Oxide Fuel Cell SOFCSingle-Chamber conceptConcept monochambrePolarisation resistancePile à combustible SOFC[CHIM.OTHE]Chemical Sciences/OtherMethaneElectrodes
researchProduct

Study of low-pressure suspension plasma spray nanostructured coating : structural characteristics and application in solid oxide fuel cell

2021

Suspension plasma spraying (SPS) has attracted more and more attention in terms of the preparation of nanostructured / sub-microstructured ceramic coatings. However, conventional SPS techniques are conducted under atmospheric pressure, which inevitably causes some disadvantages. Recently, a novel suspension spraying technology – low-pressure suspension plasma spraying (LPSPS) – was proposed, in which the sus-pension spraying process is conducted under low environmental pressure. Benefit from the significant impact of low pressure on the coating deposition, LPSPS is expected to improve the disadvantage of SPS as well as to obtain distinct coating structures not achievable in conventional SPS…

Structural characteristicsSpraying conditionsConditions de projectionSolid oxide fuel cellRevêtement céramique nanostructuréNanostructured ceramic coatingPile à combustible à oxyde solide[SPI.MAT] Engineering Sciences [physics]/MaterialsProjection plasma de suspension sous basse pressionCaractéristiques structurellesLow-Pressure suspension plasma spraying
researchProduct