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Commissioning of water detritiation and cryogenic distillation systems at TLK in view of ITER design

机译:鉴于ITER设计,在TLK进行水处理和低温蒸馏系统的调试

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The ITER Isotope Separation System (ISS) and Water Detritiation System (WDS) will be integrated in order to reduce potential chronic tritium releases from the ISS by routing the top (protium) product from the ISS into the Liquid Phase Catalytic Exchange (LPCE) column of WDS. This provides an additional barrier against ISS tritium releases and should mitigate the memory effects due to process parameter fluctuations in the ISS.rnTo support the research activities needed to characterize the performances of various components for WDS and ISS processes in various working conditions and configurations as needed for ITER design, an experimental facility called TRENTA and representative of the ITER WDS and ISS protium separation column has been commissioned at Tritium Laboratory Karlsruhe (TLK).rnThe TRENTA facility consists of Combined Electrolysis Catalytic Exchange (CECE) process, with an LPCE column of 8 m, in combination with a cryogenic distillation (CD) process. The processes description and the status of commissioning of TRENTA facility is presented.
机译:将ITER同位素分离系统(ISS)和水分解系统(WDS)集成在一起,以通过将来自ISS的顶部(pro)产品输送到液相催化交换(LPCE)色谱柱中来减少ISS潜在的慢性chronic释放。 WDS。这为防止ISS tri释放提供了额外的障碍,并应减轻由于ISS中工艺参数波动引起的记忆效应。rn支持所需的研究活动,以表征所需的各种工作条件和配置下WDS和ISS工艺的各个组件的性能为了进行ITER设计,已在Trisium Laboratory Karlsruhe(TLK)调试了一个名为TRENTA的实验设施,并代表了ITER WDS和ISS column分离柱。rnTRENTA设施包括联合电解催化交换(CECE)工艺和LPCE柱8 m,结合低温蒸馏(CD)工艺。介绍了TRENTA设备的过程说明和调试状态。

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