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首页> 外文期刊>Annals of nuclear energy >Evaluation method of iodine re-evolution from an in-containment water pool after a loss of coolant accident, Part I: pH estimation of a solution with various chemicals
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Evaluation method of iodine re-evolution from an in-containment water pool after a loss of coolant accident, Part I: pH estimation of a solution with various chemicals

机译:失去冷却剂事故后从围护池中碘再析出的评估方法,第一部分:各种化学溶液的pH估算

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摘要

Radioactive iodine, which is released into the atmosphere of the containment building, is absorbed into the containment spray water and dissolved to be ionized. This iodine-rich water is then transported to the in-containment refueling water storage tank (IRWST) in APR1400 nuclear power plants. When the pH of the water is below 7, the dissolved iodine converts to molecular iodine and re-evolves from the water and returns to the atmosphere. A series of studies have been conducted in order to evaluate the iodine re-evolution from the IRWST. This study consists of two parts: the pH evaluation method and the evaluation of the iodine re-evolution. This paper presents the first part, i.e. the pH evaluation method. The equilibrium concentrations of various chemicals in a solution are determined at the minimum Gibbs' free energy. This method is useful for complex reactant problems rather than equilibrium constants method because the latter method requires numerous equilibrium constants and there might be missing equilibrium constants associated with the solution. The calculated pH values of solutions are compared with the experimental measurements in order to validate this method and the thermodynamic data of the chemicals incorporated into the program. The estimated values for solutions are in good agreement with the experimental measurements within a difference of less than 3.3%. (C) 2015 Elsevier Ltd. All rights reserved.
机译:放射性碘释放到安全壳建筑物的大气中,被吸收到安全壳喷雾水中并溶解以被电离。然后,将这种富含碘的水输送到APR1400核电厂的内装加油水储罐(IRWST)。当水的pH值低于7时,溶解的碘转化为分子碘,并从水中重新释放出来并返回大气。为了评估IRWST中碘的重新演化,已经进行了一系列研究。这项研究包括两个部分:pH值评估方法和碘再进化的评估。本文介绍了第一部分,即pH评估方法。溶液中各种化学物质的平衡浓度由最小吉布斯自由能确定。该方法对复杂的反应物问题有用,而不是平衡常数方法,因为后者需要大量平衡常数,并且可能缺少与溶液相关的平衡常数。将计算得出的溶液的pH值与实验测量值进行比较,以验证该方法和程序中所含化学物质的热力学数据。溶液的估计值与实验测量值相差不超过3.3%。 (C)2015 Elsevier Ltd.保留所有权利。

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