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APS -2017 Annual Meeting of the APS Mid-Atlantic Section- Event - Radioisotopes And Nuclear Isomers: Reaching Beyond Chemical Energy Storage For Energy And Power Applications

机译:APS -2017年APS中大西洋分会年会-活动-放射性同位素和核异构体:在能源和电力应用中超越化学能存储

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Energy storage in chemicals, whether fuels or batteries, forms the basis for the Army's many energy and power applications. However, these materials are limited in both energy density ($sim10^{4}$ J/g) and practical longevity (a few years for batteries). There is considerable interest in moving beyond these limitations -– at the extreme, fissionable materials reach about 10$^{11}$ J/g intrinsic energy density, but nuclear reactors are not attractive for portable energy storage. For this reason, research has focused on radioisotopes and nuclear isomers (metastable excited nuclear states) as a means of pushing beyond the ``chemical barrier'' to reach greater energy densities and longer energy storage times. This presentation will survey basic research conducted by the Army Research Laboratory and collaborating institutions in national laboratories and academia aimed at determining the feasibility of radioisotopes and nuclear isomers for energy and power applications.
机译:无论是燃料还是电池,化学品中的能量存储都是陆军众多能源和电力应用的基础。但是,这些材料的能量密度($ sim10 ^ {4} $ J / g)和实用寿命(电池几年)都受到限制。超越这些限制引起了极大的兴趣-极端情况下,可裂变材料的内在能量密度达到约10 ^ {11} $ J / g,但核反应堆对便携式能量存储没有吸引力。因此,研究集中在放射性同位素和核异构体(易位的激发核态)上,以此作为突破``化学屏障''以达到更高的能量密度和更长的能量存储时间的一种手段。本演讲将调查陆军研究实验室以及国家实验室和学术界合作机构进行的基础研究,旨在确定放射性同位素和核异构体在能源和电力应用中的可行性。

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