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Application of PHADEC method for the decontamination of radioactive steam piping components of Caorso plant

机译:PHADEC方法在Caorso工厂放射性蒸汽管道部件的去污中的应用

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摘要

The dismantling of nuclear plants is a complex activity that originates often a large quantity of radioactive contaminated residue. In this paper the attention was focused on the PHADEC (PHosphoric Acid DEContamination) plant adopted for the clearance of Caorso NPP(in Italy) metallic systems and components contaminated by Co60 (produced by the neutron capture in the iron materials), like the main steam lines, moisture separator of the turbine buildings, etc. The PHADEC plant consists in a chemical off line treatment: the crud, deposited along the steam piping during life plant as an example, is removed by means of acid attacks in ponds coupled to a high pressure water washing. Due to the fact that the removed contaminated layers, essentially, iron oxides of various chemical composition, depend on components geometry, type of contamination and time of treatment in the PHADEC plant, it becomes of meaningful importance to suggest a procedure capable to improve the control of the PHADEC process parameters. This study aimed thus at the prediction and optimization of the mentioned treatment time in order to improve the efficiency of the plant itself and to achieve, in turn, the minimization of produced wastes. To the purpose an experimental campaign was carried out by analysing several samples, i.e., taken along the main steam piping line. Smear tests as well as metallographic analyses were carried out in order to determine respectively the radioactivity distribution and the crud composition on the inner surface of the components. Moreover the radioactivity in the crud thickness was measured. These values allowed finally to correlate the residence time in the acid attack ponds to the level of the achieved decontamination.
机译:拆除核工厂是一项复杂的活动,通常起源于大量放射性污染的残留物。本文关注的焦点是用于清除Caorso NPP(意大利)金属系统和被Co60污染(通过铁材料中子捕获产生的中子产生)的金属系统和组件所采用的PHADEC(磷酸去污)设备。 PHADEC工厂采用化学离线处理:例如,在生命周期工厂中,沿着蒸汽管道沉积的粗粒通过酸蚀去除池塘中的污物,而池塘与高高压水冲洗。由于所去除的污染层(实质上是各种化学组成的氧化铁)取决于PHADEC工厂中的部件几何形状,污染类型和处理时间,因此提出一种能够改善控制水平的程序就变得非常重要。 PHADEC工艺参数。因此,本研究旨在预测和优化上述处理时间,以提高设备本身的效率并实现生产废料的最小化。为此目的,通过分析几个样品(即沿主蒸汽管道采集的样品)进行了实验。进行涂片试验以及金相分析,以便分别确定部件内表面上的放射性分布和碎屑成分。此外,测量了粗料厚度中的放射性。这些值最终允许将在酸侵蚀池中的停留时间与达到的净化水平联系起来。

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  • 来源
    《Nuclear Engineering and Design》 |2014年第7期|595-601|共7页
  • 作者单位

    DICI - University of Pisa, L. Lucio Lazzarino 1, 56126, Italy;

    DICI - University of Pisa, L. Lucio Lazzarino 1, 56126, Italy;

    Nucleco S.p.A., via Anguillarese, 301, 00123 Roma, Italy;

    DICI - University of Pisa, L. Lucio Lazzarino 1, 56126, Italy;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
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