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Modelling the behaviour of 210Po in high temperature processes

机译:对210Po在高温过程中的行为进行建模

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摘要

In several Naturally Occurring Radioactive Material (NORM) industries, relatively high temperatures are used as part of their industrial processes. In coal combustion, as occur in other high temperature processes, an increase of the activity concentration of every natural radioisotope is produced both, in residues and by-products. An additional increase can be observed in the activity concentration of radionuclides of elements with low boiling point.This work is centred in the increase of polonium, more precisely in its radioisotope Po-210, present in the natural chains, and with a half-life long enough to be considered for radiation protection purposes. This additional increase appears mainly in the residual particles that are suspended in the flue gases: the fly-ashes. Besides, scales, with a high concentration of this radioisotope, were observed. These scales are produced on surfaces with a temperature lower than the boiling point of the chemical element. Both, the accumulation in particles and the production of scales are attributed to condensation effects.When effective doses for the public and the workers are evaluated, taking into account these increases in activity concentrations, the use of theoretical models is necessary. In this work a theoretical description of those effects is presented. Moreover, a verification of the predictions of the model was performed by comparing them with measurements carried on in coal-fired power plants.The same description here presented is applicable in general to the behaviour of Po-210 in other NORM industries where high temperature processes involving raw materials are used, as can be ceramic, cement production, tiles production or steel processing.
机译:在几个自然发生的放射性物质(NORM)行业中,相对较高的温度被用作其工业过程的一部分。在煤炭燃烧中,就像在其他高温过程中一样,在残留物和副产物中,每种天然放射性同位素的活性浓度都会增加。低沸点元素放射性核素的活动浓度进一步增加,这项工作集中在po的增加上,更确切地说是天然链中存在的放射性同位素Po-210的增加,并且具有半衰期足够长的时间以用于辐射防护目的。这种额外的增加主要出现在悬浮在烟道气中的残留颗粒:飞灰中。此外,观察到具有高浓度的这种放射性同位素的水垢。这些水垢在温度低于化学元素沸点的表面上产生。颗粒物的积聚和水垢的产生均归因于凝结效应。在评估公众和工人的有效剂量时,考虑到这些活动浓度的增加,有必要使用理论模型。在这项工作中,对这些影响进行了理论描述。此外,通过将模型的预测与燃煤电厂中进行的测量进行比较,对模型的预测进行了验证。此处给出的相同描述通常适用于Po-210在高温过程中其他NORM行业中的行为使用涉及原材料的材料,例如陶瓷,水泥生产,瓷砖生产或钢铁加工。

著录项

  • 来源
    《Journal of Environmental Radioactivity》 |2011年第5期|p.520-526|共7页
  • 作者单位

    Radiological Protection of the Public and the Environment Unit, CIEMAT. Avda. Complutense, 22, 28040 Madrid, Spain;

    Radiological Protection of the Public and the Environment Unit, CIEMAT. Avda. Complutense, 22, 28040 Madrid, Spain;

    Environmental Radioactivity Laboratory, University of Extremadura, Avda. de la Universidad, s 10071 Caceres, Spain;

    Radiological Protection of the Public and the Environment Unit, CIEMAT. Avda. Complutense, 22, 28040 Madrid, Spain;

    Experimental Sciences Faculty, University of Huelva, Campus del Carmen, 21071 Huelva, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    polonium-210; modelling; coal-fired power plant; norm;

    机译:lon210;建模;燃煤电厂;规范;
  • 入库时间 2022-08-17 13:40:01

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