氚对环境的影响

Dan R. Quisenberry
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引用次数: 4

摘要

必须确定环境中氚释放的潜在辐射影响,以便制订一项方案,处理预计将用于核动力工业的氚库存。核动力工业虽然仍处于起步阶段,但每年生产的氚量已达百万立方米。如果核聚变发电的发展成为现实,它将为大量氚的释放创造一个潜在的来源,其中大部分是气态的。目前,大约90%的氚通过气体和液体流出物进入环境,并以氚化水的形式沉积在水圈中。氚可以被植物和动物吸收并有机结合,无论暴露途径如何。然而,迄今为止,在分析的食物链的任何水平上,似乎都没有与氢有关的浓度因子。人体负担取决于暴露途径,组织结合部分主要是食物中有机结合的氚的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Environmental aspects of tritium

The potential radiological implications of environmental tritium releases must be determined in order to develop a programme for dealing with the tritium inventory predicted for the nuclear power industry which, though still in its infancy, produces tritium in megacurie quantities annually. Should the development of fusion power generation become a reality, it will create a potential source for large releases of tritium, much of it in the gaseous state. At present about 90% of the tritium produced enters the environment through gaseous and liquid effluents and is deposited in the hydrosphere as tritiated water. Tritium can be assimilated by plants and animals and organically bound, regardless of the exposure pathway. However, there appears to be no concentration factor relative to hydrogen at any level of food chains analysed to date. The body burden, for man, is dependent on the exposure pathway and tissue-bound fractions are primarily the result of organically bound tritium in food.

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