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In future fusion power plants operating with a closed-loop fuel cycle, breeding a sufficient quantity of tritium is essential for sustained power generation. A key performance metric is the Tritium
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production of advanced heat exchangers, where thin walls and intricate internal features can improve performance and efficiency. Alloy 625 is expected to play a major role in future heat-exchanger designs
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. These factors are critical for accurately predicting long-term material performance in fusion environments. The research will also integrate emerging experimental data from future fusion-relevant facilities
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of research with a continuous programme of practical skills training in semiconductor science, engineering and technology, and particularly suited to students from non-traditional education routes such as
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, environmental science, and industrial innovation. The project aims to advance a patented NTP technology for the treatment of a complex waste stream and solids. The research forms part of a broader programme of