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ME-409: Energy conversion and renewable energy
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Lectures in this course (94)
Biomass Conversion: Biomethanation and Fermentation
Explores biomass conversion into biogas, biofuels, and ethanol through biomethanation and fermentation processes.
Gas Turbines and Combined Cycles
Explores gas turbines, efficiency, and combined cycles, emphasizing optimization for enhanced performance.
Biomass - Impacts & Conclusion
Covers the impact of biomass on CO2 emissions neutrality, CO2 avoidance costs, life cycle performance, and controversial uses.
Coal Power Generation: Basics and Environmental Impact
Explores coal power generation basics, environmental impact, and mitigation technologies.
Energy Storage: Introduction
Explores the classification and importance of energy storage technologies for future energy systems.
CO2 Capture and Storage: Concepts and Processes
Explores CO2 capture and storage methods, challenges, and solutions in power plants and industrial processes.
CO2 Sequestration: Transport, Storage, and Utilization
Explores CO2 transport, storage, and utilization methods for carbon capture and storage technologies.
Storage - Mechanical: Pumped Hydro and CAES
Explores pumped hydro storage and CAES principles, applications, and methods.
Nuclear Energy: Basics and Impact
Covers the basics of nuclear reactions, the history of nuclear energy, and its pros and cons.
Thermal Storage: Sensible and Latent
Explores sensible and latent thermal storage in energy systems with examples from Italy and the USA.
Nuclear Fuels: Uranium Isotopes
Explores uranium reserves, isotopes, and global distribution for nuclear power generation.
Electrochemical Storage: Principles and Applications
Delves into the principles of electrochemical storage, battery efficiency, and environmental impact.
Nuclear Demands: Uranium Reserves, Consumption, and Power Plants
Explores uranium demands, global energy systems, nuclear power plant distribution, and electricity costs.
Chemical Storage: Energy Conversion and Efficiency
Explores the process of chemical storage for renewable energy and discusses efficiency losses.
Energy Storage Technologies
Compares energy storage technologies and emphasizes the need for increased capacity.
Nuclear Conversion: Basics and Reactors
Covers the basics of nuclear physics and the operation of nuclear power plants.
Nuclear Fission: Basics and Chain Reaction
Explores the basics of nuclear fission, chain reactions, and reactivity control.
Batteries, fuel cells and electrolysis - Introduction
Covers the operating principles and efficiency of fuel cells and their applications.
Nuclear Fuel: Energy Conversion and Reactivity
Explores nuclear fuel, energy density, reactivity, and fission cross-sections for isotopes, as well as the characteristics of desirable nuclear fuel elements.
Batteries, fuel cells and electrolysis: Applications
Explores fuel cell applications, performance, efficiency, challenges, and full cycle energy efficiency in various sectors.
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