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生物磁效应:聚变反应堆开发中的一个考量因素。

Biomagnetic effects: a consideration in fusion reactor development.

作者信息

Mahlum D D

出版信息

Environ Health Perspect. 1977 Oct;20:131-40. doi: 10.1289/ehp.7720131.

Abstract

Fusion reactors will utilize powerful magnetic fields for the confinement and heating of plasma and for the diversion of impurities. Large dipole fields generated by the plasma current and the divertor and transformer coils will radiate outward for several hundred meters, resulting in magnetic fields up to 450 gauss in working areas. Since occupational personnel could be exposed to substantial magnetic fields in a fusion power plant, an attempt has been made to assess the possible biological and health consequences of such exposure, using the existing literature. The available data indicate that magnetic fields can interact with biological material to produce effects, although the reported effects are usually small in magnitude and often unconfirmed. The existing data base is judged to be totally inadequate for assessment of potential health and environmental consequences of magnetic fields and for the establishment of appropriate standards. Requisite studies to provide an adequate data base are outlined.

摘要

聚变反应堆将利用强大的磁场来约束和加热等离子体,并用于杂质的偏滤。由等离子体电流、偏滤器和变压器线圈产生的大偶极场将向外辐射数百米,导致工作区域的磁场高达450高斯。由于职业人员可能在聚变发电厂中暴露于强磁场,因此已尝试利用现有文献评估这种暴露可能产生的生物和健康后果。现有数据表明,磁场可以与生物材料相互作用产生效应,尽管所报告的效应通常幅度较小且往往未经证实。现有的数据库被认为完全不足以评估磁场对健康和环境的潜在后果以及制定适当的标准。概述了提供充分数据库所需的研究。

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