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Feasibility studies towards future self-sufficient supply of the 99Mo-99mTc isotopes with Japanese accelerators

机译:未来用日本加速器自足供应99Mo-99mTc同位素的可行性研究

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摘要

In order to establish a self-sufficient supply of 99mTc, we studied feasibilities to produce its parent nucleus, 99Mo, using Japanese accelerators. The daughter nucleus, 99mTc, is indispensable for medical diagnosis. 99Mo has so far been imported from abroad, which is separated from fission products generated in nuclear reactors using enriched 235U fuel. We investigated 99mTc production possibilities based on the following three scenarios: (1) 99Mo production by the (n, 2n) reaction by spallation neutrons at the J-PARC injector, LINAC; (2) 99Mo production by the (p, pn) reaction at Ep = 50–80 MeV proton at the RCNP cyclotron; (3) 99mTc direct production with a 20 MeV proton beam from the PET cyclotron. Among these three scenarios, scenario (1) is for a scheme on a global scale, scenario (2) works in a local area, and both cases take a long time for negotiations. Scenario (3) is attractive because we can use nearly 50 PET cyclotrons in Japan for 99mTc production. We here consider both the advantages and disadvantages among the three scenarios by taking account of the Japanese accelerator situation.
机译:为了建立 99m Tc的自给自足,我们研究了使用日系加速器生产其母核 99 Mo的可行性。子核 99m Tc,对于医学诊断是必不可少的。迄今为止, 99 Mo是从国外进口的,与使用富集的 235 U燃料的核反应堆中产生的裂变产物分离。我们基于以下三种情况研究了 99m Tc的生产可能性:(1)J-PARC注入器中散裂中子通过(n,2n)反应产生 99 Mo ,LINAC; (2)在RCNP回旋加速器上,Ep = 50–80 MeV质子的(p,pn)反应产生 99 Mo; (3)用PET回旋加速器的20 MeV质子束直接生产 99m Tc。在这三种方案中,方案(1)适用于全球规模的方案,方案(2)在本地有效,并且两种情况都需要花费很长时间进行谈判。方案(3)具有吸引力,因为我们可以在日本使用近50个PET回旋加速器来生产 99m Tc。在这里,我们通过考虑日本加速器的情况来考虑这三种情况之间的优缺点。

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