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Economical Production of Pu-238

机译:economical production of PU-238

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摘要

All space exploration missions traveling beyond Jupiter must use radioisotopic power sources for electrical power. The best isotope to power these sources is plutonium-238. The US supply of Pu-238 is almost exhausted and will be gone within the next decade. The Department of Energy has initiated a production program with a $10M allocation from NASA but the cost is estimated at over $100 M to get to production levels. The Center for Space Nuclear Research has conceived of a potentially better process to produce Pu-238 earlier and for significantly less cost. The new process will also produce dramatically less waste. Potentially, the front end costs could be provided by private industry such that the government only had to pay for the product produced. Under a NASA Phase I NIAC grant, the CSNR has evaluated the feasibility of using a low power, commercially available nuclear reactor to produce at least 1.5 kg of Pu-238 per year. The impact on the neutronics of the reactor have been assessed, the amount of Neptunium target material estimated, and the production rates calculated. In addition, the size of the post-irradiation processing facility has been established. In addition, a new method for fabricating the Pu-238 product into the form used for power sources has been identified to reduce the cost of the final product. In short, the concept appears to be viable, can produce the amount of Pu-238 needed to support the NASA missions, can be available within a few years, and will cost significantly less than the current DOE program.
机译:所有飞越木星的太空探索任务都必须使用放射性同位素电源作为电力。为这些能源提供动力的最佳同位素是238238。美国供应的Pu-238几乎已用完,在未来十年内将消失。能源部已经启动了一项生产计划,美国宇航局拨款1000万美元,但要达到生产水平,成本估计超过1亿美元。空间核研究中心构想了一种可能更好的工艺,可以更早地生产Pu-238,并且成本大大降低。新工艺还将大大减少浪费。前端成本有可能由私营企业提供,这样,政府只需为生产的产品付费。在NASA的第一阶段NIAC资助下,CSNR评估了使用低功率的商用核反应堆每年生产至少1.5千克Pu-238的可行性。评估了对反应堆中子学的影响,估算了target目标材料的量,并计算了生产率。另外,已经确定了辐照后处理设备的尺寸。另外,已经确定了一种将Pu-238产品制成电源形式的新方法,以降低最终产品的成本。简而言之,该概念似乎是可行的,可以产生支持NASA任务所需的Pu-238数量,可以在几年内上市,并且成本将大大低于当前的DOE计划。

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