首页> 外文期刊>Journal of Radioanalytical and Nuclear Chemistry: An International Journal Dealing with All Aspects and Applications of Nuclear Chemistry >Accumulation of uranium, transuranium and fission products on stainless steel surfaces. I. A comprehensive view of the experimental parameters influencing the extent and character of the contamination
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Accumulation of uranium, transuranium and fission products on stainless steel surfaces. I. A comprehensive view of the experimental parameters influencing the extent and character of the contamination

机译:不锈钢表面上会积聚铀,超铀和裂变产物。一,关于影响污染程度和特征的实验参数的综合观点

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摘要

The surface contamination by uranium and transuranium (Pu, Am, Cm) nuclides in the primary circuit of pressurized water nuclear reactors is a fairly complex problem as (i) different chemical forms (molecular, colloidal and/or disperse) of these atoms can be present in the boric acid coolant, and (ii) only limited information about the extent, kinetics and mechanism of uranium and transuranium (TRU) accumulation on constructional materials is available in the literature. A comprehensive program has been initiated in order to study the accumulation of uranium and TRU species on some structural materials used at Soviet made VVER-type pressurized water reactors (such as heat exchanger tube of steam generators and stainless steel canister material). This paper, which is the first part of a series of two, provides a comprehensive view on the main experimental parameters influencing the extent and character of the surface contamination by uranium and TRU nuclides. Specifically, we give a brief summary of relevant literature data on the chemistry of uranium and TRU elements and review the dominant chemical forms and their relative sorbability on austenitic stainless steel and Zr(Nb) alloy surfaces. Moreover, some findings on the distribution of uranium, plutonium, americium, and curium species in a model solution of boric acid coolant obtained by the VisualMINTEQ computer code are also presented and discussed.
机译:压水核反应堆一次回路中铀和跨铀(Pu,Am,Cm)核素的表面污染是一个相当复杂的问题,因为(i)这些原子的化学形式(分子,胶体和/或分散体)可能不同。文献中仅提供了有关铀和跨铀(TRU)在建筑材料上堆积的程度,动力学和机理的有限信息。为了研究铀和TRU物种在苏联制造的VVER型压水反应堆(例如蒸汽发生器的换热管和不锈钢罐材料)使用的某些结构材料上的积累,已经启动了一项综合计划。本文是这两个系列文章的第一部分,它对影响铀和TRU核素表面污染程度和特征的主要实验参数提供了全面的看法。具体而言,我们简要概述了有关铀和TRU元素化学的相关文献数据,并综述了主要化学形式及其在奥氏体不锈钢和Zr(Nb)合金表面上的相对吸附性。此外,还介绍并讨论了有关通过VisualMINTEQ计算机代码获得的硼酸冷却剂模型溶液中铀,p,a和cur物种分布的一些发现。

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