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Hydrogen removal from LWR containments by catalytic-coated thermal insulation elements (THINCAT)

机译:通过催化涂层绝热元件(THINCAT)从轻水堆安全壳中除氢

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In the THINCAT project, an alternative concept for hydrogen mitigation in a light water reactor (LWR) containment is being developed. Based on catalytic coated thermal insulation elements of the main coolant loop components, it could be considered either as an alternative to backfitting passive autocatalytic recombiner devices, or as a reinforcement of their preventive effect. The present paper summarises the results achieved at about project mid-term. Potential advantages of catalytic thermal insulation studied in the project are: 1. reduced risk of unintended ignition, 2. no work space obstruction in the containment, 3. no need for seismic qualification of additional equipment, 4. improved start-up behaviour of recombination reaction. Efforts to develop a suitable catalytic layer resulted in the identification of a coating procedure that ensures high chemical reactivity and mechanical stability. Test samples for use in forthcoming experiments with this coating were produced. Models to predict the catalytic rates were developed, validated and applied in a safety analysis study. Results show that an overall hydrogen concentration reduction can be achieved which is comparable to the reduction obtained using conventional recombiners. Existing experimental information supports the argument of a reduced ignition risk.
机译:在THINCAT项目中,正在开发用于减轻轻水反应堆(LWR)密闭容器中氢气的替代概念。基于主要冷却剂回路组件的催化涂层隔热元件,它既可以替代被动式自催化复合装置的替代方案,又可以增强其预防效果。本文总结了大约在项目中期取得的成果。在该项目中研究的催化绝热的潜在优势是:1.减少意外着火的风险; 2.安全壳内没有工作空间障碍; 3.不需要附加设备的抗震鉴定; 4.改善了复合装置的启动性能反应。开发合适的催化层的努力导致确定了确保高化学反应性和机械稳定性的涂覆方法。使用该涂层制备了用于即将进行的实验的测试样品。预测,催化速率的模型已开发,验证并应用于安全性分析研究。结果表明,可以实现总体氢浓度降低,这与使用常规重组器获得的降低相当。现有的实验信息支持降低点火风险的观点。

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