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Advanced fuel fusion reactors: Towards a zero-waste option

机译:先进的燃料聚变反应堆:朝着零废物的方向迈进

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Low activation materials are only a partial response to the requirement of a really environmentally sound fusion reactor: another way round to tackle the problem is the reduction of the neutron flux and subsequent material irradiation, possibly by exploring other possible fusion reactions such as the DeuteriumHelium-3 one. Most of the studies and experiments on nuclear fusion are currently devoted to the Deuterium-Tritium (DT) fuel cycle. The recent stress on safety by the world community has stimulated the research on 'advanced' reactions, such as Deuterium-Helium-3 (DHe3). IGNITOR is a proposed compact high magnetic field tokamak. A design evolution of IGNITOR in the direction of a reactor using a DHe3 fuel cycle has led to the proposal of the Candor experiment. This paper deals with the radioactive waste issue for fusion reactors, proposing an innovative solution (the "zero-waste" option), which is a clear advantage of fusion power versus fission, in view of its ultimate safety and public acceptance. Fusion reactors with advanced DHe3 fuel cycle turn out to have quite outstanding environmental advantages.
机译:低活化材料只是对一个真正对环境无害的聚变反应堆要求的部分响应:解决该问题的另一种方法是减少中子通量和随后的材料辐照,这可能是通过探索其他可能的聚变反应(例如氘氦- 3个。目前,有关核聚变的大多数研究和实验都致力于氘-rit(DT)燃料循环。国际社会最近对安全性的强调刺激了对“先进”反应的研究,例如氘-氦3(DHe3)。 IGNITOR是一种建议的紧凑型高磁场托卡马克。 IGNITOR在使用DHe3燃料循环的反应堆方向上的设计演变导致了Candor实验的提议。本文针对聚变反应堆的放射性废物问题,提出了一种创新的解决方案(“零废物”方案),鉴于聚变功率的最终安全性和公众认可度,这是聚变功率相对于裂变的明显优势。事实证明,具有先进DHe3燃料循环的聚变反应堆具有相当出色的环境优势。

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