The scope of this thesis encompasses a comprehensive analysis of the current state of energy sustainability, focusing on renewable energy adoption and its implications. It entails examining the feasibility, effectiveness, and potential challenges associated with integrating hydrogen renewable into existing energy systems. A significant component of the thesis involves the performance evaluation of an alkaline electrolyser, a central component to foster the production of green hydrogen. This entails detailing the technological specifications, operational processes, and potential benefits of utilizing green hydrogen as a clean and renewable energy source. The analysis will explore the feasibility and scalability of green hydrogen production and utilization, highlighting its role in decarbonizing energy systems and achieving climate mitigation objectives.
The scope of this thesis encompasses a comprehensive analysis of the current state of energy sustainability, focusing on renewable energy adoption and its implications. It entails examining the feasibility, effectiveness, and potential challenges associated with integrating hydrogen renewable into existing energy systems. A significant component of the thesis involves the performance evaluation of an alkaline electrolyser, a central component to foster the production of green hydrogen. This entails detailing the technological specifications, operational processes, and potential benefits of utilizing green hydrogen as a clean and renewable energy source. The analysis will explore the feasibility and scalability of green hydrogen production and utilization, highlighting its role in decarbonizing energy systems and achieving climate mitigation objectives.
Performance analysis of a hydrogen production plant: Efficiency evaluation of a NaOH alkaline electrolyzer
XHANI, ENRIK
2023/2024
Abstract
The scope of this thesis encompasses a comprehensive analysis of the current state of energy sustainability, focusing on renewable energy adoption and its implications. It entails examining the feasibility, effectiveness, and potential challenges associated with integrating hydrogen renewable into existing energy systems. A significant component of the thesis involves the performance evaluation of an alkaline electrolyser, a central component to foster the production of green hydrogen. This entails detailing the technological specifications, operational processes, and potential benefits of utilizing green hydrogen as a clean and renewable energy source. The analysis will explore the feasibility and scalability of green hydrogen production and utilization, highlighting its role in decarbonizing energy systems and achieving climate mitigation objectives.File | Dimensione | Formato | |
---|---|---|---|
Master_Thesis_Enrik_Xhani.pdf
accesso aperto
Dimensione
3.58 MB
Formato
Adobe PDF
|
3.58 MB | Adobe PDF | Visualizza/Apri |
I documenti in UNITESI sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.
https://hdl.handle.net/20.500.12075/17684