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US fusion energy tech startup Helion Energy has signed an agreement to provide Microsoft with electricity from its first fusion power plant. Constellation will serve as the power marketer and will manage transmission for the project. Helion said the plant is expected to be online by 2028 and will target power generation of 50 MW or more after a one-year ramp up period. The companies did not disclose financial or timing details of the power purchase agreement, or which Microsoft facilities would get fusion-generated electricity.

Date: Wednesday, 17 May 2023
Original article: neimagazine.com/news/newshelion-announces-first-fusion-energy-purchase-agreement-with-microsoft-10852833

The 28th IAEA Fusion Energy Conference (FEC), which is being held on-line from 10-25 May, has attracted a record 3,400 attendees, including both full participants and observers. The conference organisers include the International Atomic Energy Agency (IAEA), the French Alternative Energies and Atomic Energy Commission (CEA), and the ITER Organisation and the week-long programme takes full advantage of a powerful web platform.

Date: Wednesday, 12 May 2021
Original article: neimagazine.com/news/newsiaea-fusion-energy-conference-attracts-record-participation-8735698

The UK government announced this week its invitation to local communities to put forward proposals to host the country's prototype fusion energy power plant. The successful site will be home to the construction of STEP - the Spherical Tokamak for Energy Production - that is targeted for completion by 2040. At a media briefing ahead of the government's announcement, Professor Ian Chapman, CEO of the UK Atomic Energy Authority, explained why this is an exciting prospect for the whole world.

Date: Saturday, 05 December 2020
Original article: world-nuclear-news.org/Articles/Speech-The-search-for-a-UK-home-for-the-world-s-fi

Plan is to generate first ultra-hot plasma at €20bn facility in 2025 The €20bn project will replicate the reactions that power the sun and is intended to demonstrate fusion power can be generated on a commercial scale. Photo courtesy Iter. The world’s largest nuclear fusion project began its five-year assembly phase on Tuesday in southern France, with the first ultra-hot plasma expected to be generated in late 2025.

The €20bn Iter (International Thermonuclear Experimental Reactor) project will replicate the reactions that power the sun and is intended to demonstrate fusion power can be generated on a commercial scale.

The steel and concrete superstructures nestled in the hills of southern France will house a 23,000-tonne machine, known as a tokamak, capable of creating what is essentially an earthbound star.

Millions of components will be used to assemble the giant reactor, which will weigh 23,000 tonnes and the project is the most complex engineering endeavour in history. Almost 3,000 tonnes of superconducting magnets, some heavier than a jumbo jet, will be connected by 200km of superconducting cables, all kept at -269C by the world’s largest cryogenic plant.

Date: Wednesday, 29 July 2020
Original article: nucnet.org/news/world-s-largest-nuclear-fusion-project-under-assembly-in-france-7-2-2020

Experimental and theoretical research has shown 'spherical' tokamaks to be a "fast route to fusion" compared with more "conventional" tokamak devices such as Joint European Torus (JET), according to David Kingham, chief executive of Tokamak Energy.

Date: Monday, 30 January 2017
Original article: world-nuclear-news.org/Articles/Spherical-tokamak-to-put-fusion-power-in-grid-by-2

Following UK media reports questioning the future of UK's Culham Centre for Fusion Energy (CCFE) and the Joint European Torus (JET) in the wake of the UK's expected withdrawal from the European Union (Brexit), CCFE head Ian Chapman said on 30 November that "nothing has changed". JET is the largest tokamak in the world and the only operational fusion experiment currently capable of producing fusion energy.

Date: Tuesday, 06 December 2016
Original article: neimagazine.com/news/newsconcern-over-future-of-uk-fusion-research-5689165