Green hydrogen will be an essential part of the future 100% sustainable energy and industry system. Up to one-third of the required solar and wind electricity would eventually be used for water electrolysis to produce hydrogen, increasing the cumulative electrolyzer capacity to about 17 TWel by 2050. The key method applied in this research is a learning curve approach for the key technologies, i.e., solar photovoltaics (PV) and water electrolyzers, and levelized cost of hydrogen (LCOH). Sensitivities for the hydrogen demand and various input parameters are considered. Electrolyzer capital expenditure (CAPEX) for a large utility-scale system is expected to decrease from the current 400 €/kWel to 240 €/kWel by 2030 and to 80 €/kWel by 2050. W...
Water electrolysis is a process which converts electricity into hydrogen and is seen as a key techno...
The application of photovoltaic (PV) power to split water and produce hydrogen not only reduces carb...
The European Green Deal states that it wants to develop 40 GW of electrolyzer capacity by 2030 in No...
Green hydrogen will be an essential part of the future 100% sustainable energy and industry system. ...
The transition towards a renewable energy-based society is challenged by spatial and temporal imbala...
The transition towards a renewable energy based society is challenged by spatial and temporal imbala...
Global trade of green hydrogen will probably become a vital factor in reaching climate neutrality. T...
Hydrogen could become one of the most important energy carriers for great parts of renewable mobilit...
Solar energy is going to play a crucial role in the future energy scenario of the world that conduct...
Hydrogen is acclaimed to be an energy carrier of the future. Currently, it is mainly produced by fos...
Low-carbon (green) hydrogen can be generated via water electrolysis using photovoltaic, wind, hydrop...
The present paper reports a techno-economic analysis of two solar assisted hydrogen production techn...
Hydrogen has been considered as a clean energy carrier by generating electricity via fuel cells with...
A technoeconomic analysis of photoelectrochemical (PEC) and photovoltaic-electrolytic (PV-E) solar-h...
Global trade of green hydrogen will probably become a vital factor in reaching climate neutrality. T...
Water electrolysis is a process which converts electricity into hydrogen and is seen as a key techno...
The application of photovoltaic (PV) power to split water and produce hydrogen not only reduces carb...
The European Green Deal states that it wants to develop 40 GW of electrolyzer capacity by 2030 in No...
Green hydrogen will be an essential part of the future 100% sustainable energy and industry system. ...
The transition towards a renewable energy-based society is challenged by spatial and temporal imbala...
The transition towards a renewable energy based society is challenged by spatial and temporal imbala...
Global trade of green hydrogen will probably become a vital factor in reaching climate neutrality. T...
Hydrogen could become one of the most important energy carriers for great parts of renewable mobilit...
Solar energy is going to play a crucial role in the future energy scenario of the world that conduct...
Hydrogen is acclaimed to be an energy carrier of the future. Currently, it is mainly produced by fos...
Low-carbon (green) hydrogen can be generated via water electrolysis using photovoltaic, wind, hydrop...
The present paper reports a techno-economic analysis of two solar assisted hydrogen production techn...
Hydrogen has been considered as a clean energy carrier by generating electricity via fuel cells with...
A technoeconomic analysis of photoelectrochemical (PEC) and photovoltaic-electrolytic (PV-E) solar-h...
Global trade of green hydrogen will probably become a vital factor in reaching climate neutrality. T...
Water electrolysis is a process which converts electricity into hydrogen and is seen as a key techno...
The application of photovoltaic (PV) power to split water and produce hydrogen not only reduces carb...
The European Green Deal states that it wants to develop 40 GW of electrolyzer capacity by 2030 in No...