
Alpiq is an internationally active energy group headquartered in Lausanne, Switzerland. The company was established in 2009 after the merger of Atel Holding AG (Aare-Tessin AG für Elektrizität) and EOS S.A. (Energie Ouest Suisse). The energy group employs around 1221 people, is active in most. . The company was formed in February 2009 from the merger of Energie Ouest Suisse (EOS) and Aare-Tessin AG für Elektrizität (Atel).In 2010, Alpiq became the. . Alpiq is an independent electricity producer and energy trader. The company is active in the business fields of energy generation, trading, and services. Its customers include medium. . In 2018, Alpiq generated an average of 298 grams of CO2 equivalents and 19 cubic millimeters of nuclear waste per kilowatt-hour. Alpiq was. . • . Alpiq is a public limited company under the , with its registered office in Lausanne. As the operator of several power plants, it is active in the fields of energy generation and energy trading. The three shareholder groups EOS Holding SA,. . 1. ^ Cleuson-Dixence and Grande Dixence have a combined capacity of 2069 MW and a combined annual production of 2 TWh [pdf]
At 31 December 2020, the Alpiq Group’s management structure comprises the three operational business divisions of Generation Switzerland, Generation International and Digital & Commerce.
Alpiq is a leading energy company based in Switzerland, providing customers with energy management and optimization services. They help simplify energy processes and make positive changes in business results. Alpiq is your partner in all things energy-related and is at your service all over Europe.
The canton of Solothurn sold its shares in Alpiq during the reporting year. The three shareholder groups EOS Holding SA, Schweizer Kraftwerksbeteiligungs-AG and the consortium of Swiss minority shareholders each hold one-third of the Alpiq shares. Learn more about Alpiq - thanks to the Annual Report 2020.
Alpiq is committed to transparent and responsible business management, and pursues sustainable corporate development. Transparency and fairness are ensured by effective management and controlling systems, an open information policy and ethical principles. Except where otherwise stated, all information given is at 31 December 2020.
Lausanne – Alpiq is selling its seven rooftop photovoltaic assets in Switzerland with total installed capacity of 5.5 MWp as a package to PS Panneaux Lausanne – Alpiq expands its flexibility portfolio and acquires one of the largest battery energy storage systems (BESS) in Finland. The 30 MW
On 22 September 2020, Alpiq announced the resignation of André Schnidrig as CEO with immediate effect. At the same time, it was announced that the Board of Directors had appointed Antje Kanngiesser as the new CEO. She will take up her position on 1 March 2021.

The Mubuga Solar Power Station is a grid-connected 7.5 MW power plant in . The power station was constructed between January 2020 and October 2021, by Gigawatt Global Coöperatief, the Netherlands-based multinational (IPP), through its local subsidiary Gigawatt Global Burundi SA. The off-taker for this power station is Régie de production et distribution d’eau et d’électricité (), the Burundian electricity utility. [pdf]
Central Energy AG is an independent, privately owned energy trading company with its head office in Zug, Switzerland. The company has been incorporated in 1997 and ever since has been engaged in trading and shipping of oil products. Recently, activities have been expanded to include biofuels and soft commodities.
We also have a network of trusted business partners and representatives around the world. Central Energy is an Energy and Commodity Trading company with headquarters in Zug, Switzerland. The company has been incorporated in 1997 and is active in trading energy products, soft commodities and renewables.
The power station is located in the settlement of Mubuga, in the Gitega Province of Burundi, approximately 15.2 kilometres (9 mi), northeast of the city of Gitega, the political capital of that country. This power station is the first grid-connected solar project developed by an IPP in Burundi.
Another estimated 25-50 people were hired to operate the power station. In May 2023, Evariste Ndayishimiye, the president of Burundi toured the solar farm and personally gave his approval for the power station's capacity to be expanded to 15 megawatts.
In May 2023, Evariste Ndayishimiye, the president of Burundi toured the solar farm and personally gave his approval for the power station's capacity to be expanded to 15 megawatts. ^ a b c d e Jean Marie Takouleu (26 October 2021).
A 25-year power purchase agreement (PPA) governs the sale of electricity between Gigawatt Global Burundi SA and REGIDESO. The engineering, procurement and construction (EPC) contractor was Voltalia of France, which was also awarded the operations, management and maintenance contract.

Pumped storage plants can operate with seawater, although there are additional challenges compared to using fresh water, such as saltwater corrosion and barnacle growth. Inaugurated in 1966, the 240 MW in France can partially work as a pumped-storage station. When high tides occur at off-peak hours, the turbines can be used to pump more seawater into the reservoir than the high tide would have naturally brought in. It is the only larg. When electricity generated from nearby power plants exceeds demand, it’s used to pump water uphill, essentially filling the upper reservoir as a battery. Later, when electricity demand spikes, water is released to the lower reservoir through a turbine, generating power. [pdf]
Nature Water 2, 1028–1037 (2024) Cite this article Water systems represent an untapped source of electric power load flexibility, but determining the value of this flexibility requires quantitative comparisons to other grid-scale energy storage technologies and a compelling economic case for water system operators.
Water storage has always been important in the production of electric energy and most probably will be in future energy power systems. It can help stabilize regional electricity grid systems, storing and regulating capacity and load following, and reduce costs through coordination with thermal plants.
The analysis of the characteristics of water storage as energy storage in such future EPS is the scope of this paper. Water storage has always been important in the production of electric energy and most probably will be in future energy power systems.
The 2024 World Hydropower Outlook reported that 214 GW of pumped storage hydropower projects are currently at various stages of development. Recent atlases compiled by the Australian National University identify 600,000 identified off-river sites suggesting almost limitless potential for scaling up global PSH capacity.
Here we present a unified framework for representing water asset flexibility using grid-scale energy storage metrics (round-trip efficiency, energy capacity and power capacity) and assessing the technoeconomic benefits of energy flexibility at the water facility scale (levelized cost of water and levelized value of flexibility).
Provided by the Springer Nature SharedIt content-sharing initiative Water systems represent an untapped source of electric power load flexibility, but determining the value of this flexibility requires quantitative comparisons to other grid-scale energy storage technologies and a compelling economic case for water system operators.
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