Search results for "Fuel Cell"
showing 10 items of 260 documents
Hydrogen fuel cell vehicle and a stand-alone renewable energy-based refuelling station
2007
Electrooxidation of methyl alcohol with Ni-Co catalyst
2018
Due to development of the renewable energy sources, the powering of fuel cells (FCs) with bio-fuels is very important. The one of this fuel is methyl alcohol. 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 FCs. The paper presents a study of methyl alcohol electrooxidation on electrode with NiCo alloy catalyst. Researches were done by the method of polarizing curves of electrooxidation of methanol in glass vessel. Conducted measurements show that there is a possibility of electrooxidation of methanol with Ni-Co catalyst. In any case, the process of electroo…
Canola oil electooxitadion on smooth platinum electrode
2018
As fuel for fuel cells can be used various substances, but mainly fuel cells are powered by clear hydrogen (or hydrogen obtained from organic substances by reforming process). However, problems with the storage of hydrogen are the reason for the search of new fuels for fuel cells. 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 canola oil) will allow de-velopment of renewable energy sources and elimination or reduce of toxic substances emissions. The paper presen…
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…
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…
Computational Studies of the Structure and of the Proton Transport Phenomena in Systems Derived from Barium Cerate Perovskite Structure
2007
The final task of the whole research project is the design of new ceramic materials for protonic conduction in the range of temperature 350-750 °C. To this aim, it was planned to deepen the information on the systems obtained by doping the Ce site in the BaCeO3 perovskite matrices. In these compounds, cerium has been substituted by trivalent elements (Y, In), thus creating – to fulfill charge neutrality – oxygen vacancies that could be filled by hydroxyls groups. In this way protons have been introduced in the structure. These materials are currently investigated by both experimental and computational approaches to integrate framework structure and proton transport phenomena analyses. Due t…
Possibility of using NiCO2O4 alloy as catalyst for fuel electrode of hydrazine fuel cell
2016
The work presents a possibility of the use of NiCo2O4 alloys as catalysts for electrooxidation of hydrazine. The research was done by the method of polarizing cuvers of electrooxidation of hydrazine in glass vessel in aqueous solution of KOH, on electrode with NiCo2O4 alloy as a catalyst. Conducted measurements show that there is a possibility of electrooxidation of hydrazine on NiCo2O4 electrode. The current density is low, but the price of the catalyst is much lower than platinum.
Possibility of using NiCo2O4 alloy as catalyst for fuel electrode of hydrazine fuel cell
2017
Szerokie stosowanie ogniw paliwowych ograniczone jest głównie wykorzystywaniem drogich katalizatorów. Wyeliminowanie platyny umożliwiłoby szeroką komercjalizację tych ogniw. Artykuł przedstawia analizę elektroutleniania hydrazyny na katalizatorze NiCo2O4. Jako elektrolit wykorzystano wodny roztwór KOH. Pomiarów dokonano potencjostatem. Wykazano możliwość elektroutleniania hydrazyny na katalizatorze NiCo2O4. W każdym przypadku (dla wszystkich stężeń hydrazyny i udziałów Co) proces elektroutleniania zachodził. Gęstość prądu wynosiła 15–35 mA/cm2 dla wszystkich koncentracji hydrazyny i elektrolitu. Gęstość prądu jest niewielka, jednak koszt uzyskania katalizatora jest znacznie niższy od kosztó…
Stop Ni - Co jako katalizator anody ogniwa paliwowego zasilanego alkoholem metylowym
2016
Możliwość bezpośredniego zasilania ogniwa paliwowego biopaliwem
2017
Praca przedstawia analizę możliwości zasilania ogniw paliwowych biopaliwami. Analizy dokonano na podstawie rozpoznania pozycji literaturowych oraz badań własnych. Przeanalizowano wykorzystanie biogazu, wodoru pozyskanego metodami biologicznymi, wykorzystanie alkoholu metylowego oraz olejów roślinnych. Wykazano, że w przypadku metanolu istotnym jest poszukiwanie katalizatorów nie zawierających metali szlachetnych, natomiast w przypadku olejów roślinnych uzyskiwane wartości gęstości prądu nie pozwalają obecnie na zbudowanie ogniwa paliwowego o dużej wydajności. Wykazano, że jednak istnieje możliwość zasilania ogniw paliwowych biopaliwami, jednak konieczne są jednak, prace zmierzające do podwy…