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02/07/ · Renewable energy technologies: solar, biomass, wind, geothermal, hydro, waste-to-energy. Focus is on the engineering aspects. Objective: Students learn the potential and limitations of renewable energy technologies and their contribution towards sustainable energy utilization. Prerequisites / Notice. The Master’s degree programme in Energy Science and Technology (MEST)is offered by ETH Zurich to enable future engineers to rise to the challenge of developing future sustainable energy systems. The programme provides education in a large number of scientific disciplines. Students individually structure their own study profile by selecting from a. 17/04/ · The lectures Renewable Energy Technologies I (L) and Renewable Energy Technologies II (L) can be taken independently from one another. Energy research at ETH Zurich is based on the “1 tonne of CO 2 ” target. For Switzerland, this means that the country’s annual CO 2 emissions must be reduced from the current 6 tonnes per capita to 1 tonne before the year This ambitious goal is to be reached through energy efficiency, renewable energy, and electrification.

Read More. These activities aim at addressing the fundamental and practical problems that are relevant for the development of new workable, reliable, efficient and sustainable solutions in Energy and Transport sectors. The Laboratory for Electrochemical Energy Systems targets challenges related to the development of the new solutions to satisfy the growing demand for energy. They study complex phenomena in solids and liquids and at their electrified interfaces that are associated with storing energy reversibly and efficiently converting electrical energy into fuels.

Next, they apply the fundamental knowledge that they gained to develop new materials for batteries and electro-catalysis that can deliver improved performance, cost, efficiency and safety. They are also interested in designing eco-friendly energy systems that have minimal environmental impact. Read More The Laboratory for Energy Conversion carries out research on cooling and thermal management, improves the efficiency of turbomachines, minimizes the high-cycle fatigue failure of compressors, enhances the performance and reliability of wind energy and suppresses aircraft noise.

It investigates laser produced plasma source EUV for the semiconductor industry of tomorrow and develops novel measurement techniques. The Laboratory for Energy and Process Systems Engineering focuses on sustainable energy systems and chemical production processes. To develop solutions for sustainable energy and chemical processes, they start on a molecular scale, where they develop processes using computer-aided molecular and process design.

They transfer their expertise in modeling and in thermodynamics to the optimization of sustainable energy and chemical process systems on industrial to national scales. Along with Life Cycle Assessments for evaluating the environmental impacts of systems, they also consider economic costs. Thus, their research questions span multiple dimensions from molecules and processes to energy and process systems, from sustainability to profits.

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What attracts students to the MEST programme? Watch our video to hear how these graduates found it a success for them. Developing future sustainable energy systems requires education in a large number of scientific disciplines. The MEST programme provides the fundamentals needed to tackle the complex challenges facing the creation of sustainable energy systems. The Master’s degree programme in Energy Science and Technology MEST is offered by ETH Zurich to enable future engineers to rise to the challenge of developing future sustainable energy systems.

The programme provides education in a large number of scientific disciplines. Students individually structure their own study profile by selecting from a wide range of courses across many of the ETH departments. See what current and past MEST students say about the programme in our latest video. MEST students, past and present, say what attracted them to the MEST programme in a recent video.

The aims and benefits of the programme, plus alumni testimonials and course pre-requisites can be found in the MEST Brochure PDF, KB. The MEST programme equips its graduates with the skills required for energy-related careers; in this recently recorded webinar click below , 2 graduates share insights about their career choices and the roles they are now in.

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renewable energy technologies eth

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STMicroelectronics has been present in Bouskoura for over 20 years with a back-end plant which employs 2, people. The site has developed several programs over the last few years to reduce its indirect greenhouse gas emissions Scope 2 and augment the use of renewable energy sources:. The use of electricity from wind power at our Bouskoura plant in Morocco marks a major step forward for our Group and reflects a trend that will be strengthened over time and expanded to include several of our sites.

At ST, we are 46, creators and makers of semiconductor technologies mastering the semiconductor supply chain with state-of-the-art manufacturing facilities. An independent device manufacturer, we work with more than , customers and thousands of partners to design and build products, solutions, and ecosystems that address their challenges and opportunities, and the need to support a more sustainable world.

Our technologies enable smarter mobility, more efficient power and energy management, and the wide-scale deployment of the Internet of Things and 5G technology. Further information can be found at www. By using our services, you accept our updated Terms of Use, Data Protection Policy and our use of cookies. Data Protection Policy Learn more. Free License – non-commercial use only.

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renewable energy technologies eth

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In a joint research project of five Swiss competence centres for energy research, scientists of the Paul Scherrer Institute PSI and colleagues have prepared a white paper on „Power-to-X“ for consideration by the Swiss Federal Energy Research Commission CORE. The goal of the white paper is to gather together the most important insights available on Power-to-X technologies. Among other things, the study sheds light on contributions that could be made to Switzerland’s energy strategy by different technologies based on conversion and storage of various forms of energy.

The experts are presenting the findings of this study on July 8th at ETH Zurich. Switzerland has set itself the goal of drastically reducing its direct emissions of greenhouse gases. According to its Energy Strategy , by emissions of greenhouse gases should decrease by 50 percent compared to , and up to a maximum of 85 percent by After , the energy supply in Switzerland should be climate-neutral, that is, without emissions of greenhouse gases such as CO 2.

One component of the effort to achieve this goal could be so-called Power-to-X techniques. Here surplus electricity from new renewable energy sources is used to produce, through electrochemical conversion, liquid or gaseous energy carriers such as hydrogen, methane, or methanol. These are then used in the consumer sectors to power vehicles or to generate heat or electricity again.

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Introductory first course for the specialization in ENERGY. The course provides an overall view of the energy field and pertinent global problems, reviews some of the thermodynamic basics in energy conversion, and presents the state-of-the-art technology for power generation and fuel processing. World primary energy resources and use: fossil fuels, renewable energies, nuclear energy; present situation, trends, and future developments.

Sustainable energy system and environmental impact of energy conversion and use: energy, economy and society. Electric power and the electricity economy worldwide and in Switzerland; production, consumption, alternatives. The electric power distribution system. Renewable energy and power: available techniques and their potential. Cost of electricity. Conventional power plants and their cycles; state-of-the -art and advanced cycles.

Combined cycles and cogeneration; environmental benefits. Solar thermal power generation and solar photovoltaics. Hydrogen as energy carrier. Fuel cells: characteristics, fuel reforming and combined cycles.

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Bulk energy storage systems are vitally important for the integration of – intermittent and unpredictable – renewable power sources into the grid. We investigate the development of an efficient and scalable ice production technology able to resolve current challenges on the cold side of a most promising Thermoelectric Energy Storage TEES system Fig. Surface nano-engineering with respect to wetting and complete characterization of performance under condensation and freezing conditions are being carried out by LTNT.

The goal is to realize icephobic surfaces for challenging undercooling conditions making possible the scalable and controllable ice-formation in related heat exchanger devices. Press Enter to activate screen reader mode. Homepage Navigation Search Content Footer Contact Sitemap. You are here Homepage Research Transformative Energy Technologies Renewable Energy Storage. Renewable Energy Storage Main content. Figure 1: Schematic illustration of the charging and discharging cycles of TEES system with ice production and ice melting respectively on the cold side.

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Energy policies are central for environmental performance, costs and security of energy supply. Moreover, they play an important role for innovation, new technology development and sectoral change. Researchers at SusTec investigate the effects of energy policies on technology development and organizational strategies, in different contexts. If you would like to receive more information or have questions on this topic, please contact one of the following experts:.

Press Enter to activate screen reader mode. Homepage Navigation Search Content Footer Contact Sitemap. You are here Homepage Research Topics Policy Energy Policy. Energy Policy Main content. Photo source: Wikipedia. Key findings: The design of policy mixes for renewable energy support will benefit from two complementary perspectives when studying policy impact: strategic intent and specific impact domain Ossenbrink et al.

Major conflict lines include the ambition to support renewables and the degree of de- centralization of the electricity system Lindberg et al. Energy policy making should consider that belief based approaches explain the adoption of innovation better than economic models Girod et al.

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Renewable energy technologies II, energy storage and conversion; Renewable energy technologies II, energy storage and conversion. ETH / 4 credits. Teacher: Profs divers * Language: English. Remark: cours donné par l’ETHZ. Content. Show more In the programs Nuclear engineering Master semester 2. Semester: Spring; Exam form. Renewable Energy’s Coming of Age: A Disruptive Technology? In an era of emerging transformational technologies that promise to have disruptive economic and strategic impacts—from 3D printing and robotics to biotech— renewable energy is rarely at the top of futurists’ lists.1 But maybe it should be. Continuing long-term.

Energy storage technologies are central to low-carbon energy systems with high shares of intermittent renewable energy sources. They can serve various applications along the electricity value chain that range from increasing the power quality and reliability for end-consumers to the provision of ancillary services on grid level. SusTec research investigates innovation dynamics in the field of energy storage technologies, elaborating on conditions that drive or inhibit the deployment of various storage technologies e.

If you would like to receive more information or have questions on this topic, please contact one of the following experts:. Press Enter to activate screen reader mode. Homepage Navigation Search Content Footer Contact Sitemap. You are here Homepage Research Topics Technology Energy Storage. Energy Storage Main content. Photo source: Wikipedia. Key findings: With regard to profitability, six distinct use cases for stationary battery installations can be distinguished that currently appear economically promising Malhotra et al.

Hence, policies may influence emerging technologies directly or indirectly, intendedly or unintendedly Ossenbrink et al. This integration happens via different mechanisms and is fostered by enablers such as public research funding and the interdisciplinary structure of education and research teams Stephan et al. Contact If you would like to receive more information or have questions on this topic, please contact one of the following experts: Dr.

Annegret Stephan.

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