Search results for "electrooxidation"

showing 10 items of 10 documents

Electrooxidation of coconut oil in alkaline electrolyte

2017

Providing more and more energy is an essential task of the today’s energetic industry. In the last few years, in addition to the traditional methods of energy production, alternative energy sources have been developing fast. One of the devices that can make use of these sources is a fuel cell. The fuel cells can be a power source of future mainly due to their high efficiency, low influence on environment and the possibility of powering with different fuels. Most often, fuel cells are powered by hydrogen. However, the problems with its cheap production and storage are the reason for the search for alternative fuels for fuel cells. It is important that the new fuel will be characterized by ze…

0301 basic medicineMaterials sciencefood.ingredientelectrooxidationElectrolyte01 natural scienceslcsh:TD1-1066fuel cell03 medical and health sciencesfood0103 physical scienceslcsh:Environmental technology. Sanitary engineeringrenewable energy sourceslcsh:Environmental sciencesEcology Evolution Behavior and Systematicscoconut oilGeneral Environmental Sciencelcsh:GE1-350010302 applied physics030109 nutrition & dieteticsWaste managementbusiness.industryCoconut oilRenewable energyenvironment engineeringFuel cellsbusinessJournal of Ecological Engineering
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Electrochemical oxidation of tetramethoxy precursor as a key step for the synthesis of coenzyme Q10

2007

The feasibility of electrosynthesis of coenzyme Q10 (1) by electrooxidation of tetramethoxy precursor (2) has been investigated at carbon, Pt and BDD anodes in a divided cell. The process strongly depends on the applied potential, anode material and water content of the solvent. At carbon anodes in CH3CN/CH2Cl2 + 0.15 M Bu4NBF4 at proper operative conditions high faradic efficiency (>60%) and excellent selectivity (95–97%) of the target product were obtained. Keywords: Electrosynthesis, Coenzyme Q10, Anodic oxidation

Inorganic chemistrychemistry.chemical_elementSettore ING-IND/27 - Chimica Industriale E TecnologicaAnodesAnodic oxidationCarbonElectrooxidationPlatinumSynthesis (chemical)Water contentElectrochemistryElectrosynthesislcsh:ChemistrySolventchemistry.chemical_compoundSettore ING-IND/22 - Scienza E Tecnologia Dei Materialilcsh:Industrial electrochemistrylcsh:QD1-999chemistryTransition metalElectrochemistrySelectivityPlatinumAcetonitrilelcsh:TP250-261DichloromethaneElectrochemistry Communications
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Elektroutlenianie odpadowego syntetycznego oleju silnikowego w wodnym roztworze H2SO4

2017

W pracy przedstawiono badania nad możliwością wykorzystania odpadowego syntetycznego oleju silnikowego do bezpośredniego wytwarzania energii elektrycznej. Pomiary przeprowadzono w zakresie temperatur 293–333 K. Obejmowały one elektroutlenianie emulsji odpadowego (zużytego) syntetycznego oleju silnikowego na elektrodzie platynowej w wodnym roztworze H2SO4. Do wytworzenia emulsji wykorzystano niejonowy środek powierzchniowo czynny Syntanol DS-10. Maksymalna uzyskana gęstość prądu wyniosła 22 mA/cm2 (dla temp. 333 K). Wykazano więc, że istnieje możliwość bezpośredniego wytwarzania prądu elektrycznego z odpadowego syntetycznego oleju silnikowego, a więc zasilania nim ogniw paliwowych.

elektroutlenianieenvironmental engineeringused synthetic engine oilelectrooxidationodpadowy olej silnikowypaliwofuel cellodnawialne źródła energiiogniwa paliwoweinżynieria środowiskaelectricity productionrenewable energy sourcesfuelwytwarzanie energii elektrycznejInżynieria Ekologiczna
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Ogniwo paliwowe zasilane emulsją oleju rzepakowego

2017

W pracy przedstawiono badania nad możliwością wykorzystania oleju rzepakowego jako substancji czynnej do zasilania ogniwa paliwowego. W tym celu zbudowano testowe ogniwo paliwowe. Ogniwo zasilano emulsją oleju rzepakowego. Jako detergent zastosowano Syntanol DS-10. Wykorzystano anodę z katalizatorem platynowym oraz katodę z katalizatorem Ni-Co. Pomiary przeprowadzono w temperaturze 293–333K. Maksymalna uzyskana gęstość prądu wynosiła 2 mA/cm2, natomiast maksymalna moc ogniwa 21 mW (dla temp. 333K). Wykazano, więc możliwość bezpośredniego dostarczania oleju rzepakowego (w formie emulsji) na anodę. Uzyskana moc ogniwa była stosunkowo niska, jednak istnieje możliwość zbudowania ogniwa paliwowe…

elektroutlenianieolej rzepakowyodnawialne źródła energiienvironmental engineeringuel cellcanola oilelectrooxidationogniwa paliwoweinżynieria środowiskaelectricity productionrenewable energy sourceswytwarzanie energii elektrycznejInżynieria Ekologiczna
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Methanol electrooxidation with Cu-B catalyst

2016

In the last few years alternative energy sources have been fast developing. One of these sources is fuel cell. Due to development of the renewable energy sources, the powering of fuel cells with bio-fuels is very important. The one of this fuel is methanol. The use of fuel cells on a large scale is mainly limited by the high cost of catalysts - mainly platinum. Elimination of Pt as catalyst would allow for wider commercial application of fuel cells. The paper presents a study of methanol electrooxidation on electrode with Cu-B alloy catalyst. Researches were done by the method of polarizing curves of electrooxidation of methanol in glass vessel. An aqueous solution of KOH was used as the el…

fuel cellbio-fuelelectrooxidationrenewable energy sourcesCu-B catalystmethanolenvironment engineeringInfrastruktura i Ekologia Terenów Wiejskich - Infrastructure and Ecology of Rural Areas
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Canola oil electrooxidation in an aqueous solution of KOH - Possibility of alkaline fuel cell powering with canola oil

2016

In the last few years alternative energy sources have been fast developing. One of these sources is fuel cell. Due to development of the renewable energy sources, the powering of fuel cells with bio-fuels is very important. Vegetable oil is an alternative fuel for Diesel engines and for heating oil burners. Powering high efficiency power sources like fuel cells with renewable fuels (like vegetable oil) will allow development of renewable energy sources and elimination or reduce of toxic substances emissions. The paper presents the possibility of using canola oil as fuel for fuel cells. The work shows possible electrooxidation of canola oil emulsion prepared on the basis of a nonionic surfac…

fuel cellbiofuelcanola oilelectrooxidationrenewable energy sourcefuelenvironmental protectionJournal of Power Technologies
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Electricity production from waste engine oil from agricultural machinery

2017

As fuel for fuel cells can be used various substances, but generally fuel cells are powered by hydrogen. However, problems with the storage of hydrogen are the reason for the search of new fuels for fuel cells. Moreover, annually are produced huge amount of waste oils. These oils must be directed to purification and processing. It would be important to use waste engine oil as fuel for fuel cell to direct electricity production without intermediate stage e.g. combustion. The paper presents the possibility of using waste engine oil as fuel for fuel cell. The oil does not have the feature of electrical conductivity, for this reason a detergent was used for dissolving oil in an electrolyte. So,…

fuel cellwaste engine oilenergy sourceelectrooxidationrenewable energy sourcesenvironment engineeringInfrastruktura i Ekologia Terenów Wiejskich - Infrastructure and Ecology of Rural Areas
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FUEL CELL POWERED WITH CANOLA OIL EMULSION

2017

The paper presents possibility of using canola oil as active substance to fuel cell powering. For this purpose a prototype fuel cell was built. Cell was powered with canola oil emulsion. As a detergent Syntanol DS-10 was used. The mesh electrode with Pt catalyst was used as a anode, and mesh electrode with Ni-Co catalyst was used as a cathode. The measurements conducted in the temperature range 293-333K. The maximum current density reached the level of 2 mA/cm2, and maximum power reached the level of 21 mW (at temp. 333K). So, the possibility of delivery of canola oil (in emulsion form) directly to the anode was shown. The obtain power is low, but was shown that it is possible to build the …

lcsh:GE1-350environmental engineeringMaterials scienceelectrooxidation02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesfuel cellcanola oilelectricity productionrenewable energy sources0210 nano-technologylcsh:Environmental sciencesInżynieria Ekologiczna
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ELECTROOXIDATION OF USED SYNTHETIC ENGINE OIL IN AQUEOUS SOLUTION OF H2SO4

2017

The paper presents possibility of using used synthetic engine oil to direct electricity production. The measurements conducted in the temperature range 293-333 K. Were measured electrooxidation of used synthetic engine oil emulsion on a smooth platinum electrode in an aqueous solution of H2SO4. The emulsion prepared on the basis of a nonionic surfactant Syntanol DS-10. The maximum current density reached the level of 22 mA/cm2 (temp. 333 K). Measurements shows possibility of direct electricity production from used synthetic engine oil emulsion, so powering fuel cell of this oil.

lcsh:GE1-350environmental engineeringMaterials scienceused synthetic engine oilelectrooxidation02 engineering and technology010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesfuel cellelectricity productionrenewable energy sources0210 nano-technologyfuellcsh:Environmental sciencesInżynieria Ekologiczna
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Electrooxidation of diesel fuel in alkaline electrolyte

2016

In recent decades the demand of energy has increased significantly.Providing more and more energy is an essential task of today’s energetic industry. In the last few years, addition to traditional methods of energy production, alternative energy sources have been developing fast.One of these sources is fuel cell, mainly due to their high efficiency. Generally fuel cells are powered by hydrogen. However, problems with the storage of hydrogen are the reason for the search of new fuels for fuel cells. Moreover, fuel cells can provide an additional/emergency electricity source in energy systems using combustion engines. So, it is important using the main fuel for powering the fuel cell. One of …

uel celldiesel fuelelectrooxidationadditional electricity sourcerenewable energy sourcesenvironment engineeringInfrastruktura i Ekologia Terenów Wiejskich - Infrastructure and Ecology of Rural Areas
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