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首页> 外文期刊>Bulletin of Materials Science >High purity materials as targets for radioisotope production: Needs and challenges
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High purity materials as targets for radioisotope production: Needs and challenges

机译:高纯度材料作为放射性同位素生产的目标:需求和挑战

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Radionuclides have become powerful and indispensable tools in many endeavours of human activities, most importantly in medicine, industry, biology and agriculture, apart from R&D activities. Ready availability of radionuclides in suitable radiochemical form, its facile detection and elegant tracer concepts are responsible for their unprecedented use. Application of radioisotopes in medicine has given birth to a new branch, viz nuclear medicine, wherein radioisotopes are used extensively in the diagnosis and treatment of variety of dis-eases including cancer. Artificial transmutation of an element employing thermal neutrons in a reactor or high energy particle accelerators (cyclotrons) are the routes of radioisotope production world over. Availability of high purity target materials, natural or enriched, are crucial for any successful radioisotope programme. Selection of stable nuclides in suitable chemical form as targets with desired isotopic and chemical purity are among the important considerations in radioisotope production. Mostly the oxide, carbonate or the metal itself are the preferred target forms for neutron activation in a research reactor. Chemical impurities, particularly from the elements of the same group, put a limitation on the purity of the final radioisotope product. Whereas the isotopic impurities result in the production of undesirable radionuclidic impurities, which affect their effective utilization. Isotope Group, BARC, is in the forefront of radioisotope production and supply in the country, meeting demands for gamut of radioisotope applications indigenously for over four decades now. Radioisotopes such as ~(131)I, ~(99)Mo, ~(32)P, ~(51)Cr, ~(153)Sm, ~(82)Br, ~(203)Hg, ~(198)Au etc are produced in TBq quantities every month and supplied to several users and to Board of Radiation and Isotope Technology (BRIT). Such a large production programme puts a huge demand on the reliable sources of availability of high purity target materials which are at present mostly met through import. Availability of suitable target materials, their purity considerations and our efforts in finding sources of raw materials for sustaining the radioisotope programme are discussed here.
机译:放射性核素已成为人类许多活动中的强大而必不可少的工具,最重要的是除了研发活动外,还包括医学,工业,生物学和农业。合适的放射化学形式的放射性核素现成的可用性,其简便的检测和优雅的示踪剂概念是其空前使用的原因。放射性同位素在医学中的应用催生了一个新的分支,即核医学,其中放射性同位素广泛用于诊断和治疗包括癌症在内的各种疾病。在反应堆中使用热中子或高能粒子加速器(回旋加速器)进行人工变是全世界放射性同位素生产的途径。天然或高纯度高纯度目标材料的可用性对于任何成功的放射性同位素计划至关重要。选择合适的化学形式的稳定核素作为具有所需同位素和化学纯度的目标是放射性同位素生产中的重要考虑因素。多数情况下,氧化物,碳酸盐或金属本身是研究堆中中子活化的优选目标形式。化学杂质,特别是来自同一族元素的化学杂质,限制了最终放射性同位素产物的纯度。而同位素杂质导致产生不希望的放射性核素杂质,从而影响其有效利用。 BARC同位素集团处于该国放射性同位素生产和供应的最前沿,在过去的40多年里,满足了当地对放射性同位素应用范围的需求。放射性同位素,例如〜(131)I,〜(99)Mo,〜(32)P,〜(51)Cr,〜(153)Sm,〜(82)Br,〜(203)Hg,〜(198)Au此类产品每月以TBq的数量生产,并提供给多个用户以及辐射与同位素技术委员会(BRIT)。如此庞大的生产计划对高纯度目标材料的可靠可靠来源提出了巨大的需求,目前这些高纯度目标材料主要通过进口来满足。本文讨论了合适目标材料的可用性,其纯度考虑因素以及我们为维持放射性同位素计划而寻找原材料来源的努力。

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