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Long term performances assessment of a water detritiation system components

机译:长期性能评估水脱裂系统组件

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Development of a water detritiation system (WDS), i.e. configuration, design and performance testing of critical components is essential for ITER. WDS is one of the key systems to control the tritium content in the effluent streams, to recover as much tritium as possible and consequently to minimize the impact to the environment. The ITER WDS is based on combined electrolysis catalytic exchange (CECE) process employing a liquid phase catalytic exchange (LPCE) column. The separation performances after 6 months exposure to tritiated water of the catalyst-packing mixture to fill the LPCE column developed at Tritium Laboratory Karlsruhe (TLK) are presented. A small stand-alone electrolysis cell has been in operation with tritiated water for 6 months. After 6 months continuously operation, the mechanical properties such as tensile strength and elongation of a solid polymer membrane (SPM) in service with tritiated water have been compared with those of a reference SPM in service with demineralized water.
机译:开发水脱模系统(WDS),即关键组件的配置,设计和性能测试对于迭代至关重要。 WDS是控制流出物流中的氚含量的关键系统之一,以恢复尽可能多的氚,从而最大限度地减少对环境的影响。 ITER WDS基于采用液相催化交换(LPCE)柱的组合电解催化交换(CECE)方法。呈现出6个月的分离性能以催化剂包装混合物的氚化水以填充在氚实验室Karlsruhe(TLK)的LPCE柱。小型独立电解细胞已与氚化水进行6个月。在连续运行6个月后,已经将诸如氚化水中的固体聚合物膜(SPM)的抗拉强度和伸长率的机械性能与具有脱矿质的水的参考SPM进行了比较。

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