Završni rad se fokusira na potpuno automatsko reguliranje procesnih parametara modela termokemijskih reakcija za proizvodnju vodika uporabom energije Sunca. Istraživačke aktivnosti usmjerene su na područja modeliranja, simulacije i upravljanja algoritma. Razvijen je model na Arrhenius bazi kojim se simulira visoko temperaturna redukcija i oksidacija cerija. Konačni cilj je da se poveća učinkovitost termokemijskih procesa do mjere u kojoj će proizvodnja solarnog toplinskog vodika biti usporediva s procesima koji se trenutno koriste pri proizvodnji vodika.Final thesis focuses on the fully automated regulation of the process parameters of a thermochemical reaction model for so...
Der Fokus dieser Arbeit liegt auf der Untersuchung und Weiterentwicklung eines alternativen Verfahre...
Hydrogen production by solar thermal water splitting is an eco-friendly way of storing solar energy ...
Thesis (M.Ing. (Chemical Engineering))--North-West University, Potchefstroom Campus, 2012.The demand...
Završni rad se fokusira na potpuno automatsko reguliranje procesnih parametara modela termokemij...
A simulation and control model for a two-step thermo-chemical water splitting cycle using metal oxid...
The transient thermal behavior of two solar receiver-reactors for hydrogen production has been model...
The transient thermal behavior of two solar receiver-reactors for hydrogen production has been model...
Bakalá ská práce ř eš í problematiku výroby vodíku. Práce shrnuje nejperspektivnější metody výroby ...
In this study three different kind of solar thermochemical cycles (methane reforming process, sulfur...
Proizvodnja električne energije direktnom pretvorbom Sunčeve energije bez popratne emisije ugljikovo...
Hydrogen, being an environmentally friendly energy carrier is considered a future solution of the cu...
AbstractA solar thermo-chemical reactor is modeled and analyzed for the solar thermal dissociation o...
In solar tower power plants, the solar radiation is reflected by a heliostat field and concentrated ...
A two-step thermo-chemical cycle process for solar hydrogen production from water has been developed...
U radu je prikazano današnje stanje tehnologija za proizvodnju, transport, skladištenje i korištenje...
Der Fokus dieser Arbeit liegt auf der Untersuchung und Weiterentwicklung eines alternativen Verfahre...
Hydrogen production by solar thermal water splitting is an eco-friendly way of storing solar energy ...
Thesis (M.Ing. (Chemical Engineering))--North-West University, Potchefstroom Campus, 2012.The demand...
Završni rad se fokusira na potpuno automatsko reguliranje procesnih parametara modela termokemij...
A simulation and control model for a two-step thermo-chemical water splitting cycle using metal oxid...
The transient thermal behavior of two solar receiver-reactors for hydrogen production has been model...
The transient thermal behavior of two solar receiver-reactors for hydrogen production has been model...
Bakalá ská práce ř eš í problematiku výroby vodíku. Práce shrnuje nejperspektivnější metody výroby ...
In this study three different kind of solar thermochemical cycles (methane reforming process, sulfur...
Proizvodnja električne energije direktnom pretvorbom Sunčeve energije bez popratne emisije ugljikovo...
Hydrogen, being an environmentally friendly energy carrier is considered a future solution of the cu...
AbstractA solar thermo-chemical reactor is modeled and analyzed for the solar thermal dissociation o...
In solar tower power plants, the solar radiation is reflected by a heliostat field and concentrated ...
A two-step thermo-chemical cycle process for solar hydrogen production from water has been developed...
U radu je prikazano današnje stanje tehnologija za proizvodnju, transport, skladištenje i korištenje...
Der Fokus dieser Arbeit liegt auf der Untersuchung und Weiterentwicklung eines alternativen Verfahre...
Hydrogen production by solar thermal water splitting is an eco-friendly way of storing solar energy ...
Thesis (M.Ing. (Chemical Engineering))--North-West University, Potchefstroom Campus, 2012.The demand...