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INTEGRATED TESTS OF WATER DETRITIATION AND CRYOGENIC DISTILLATION IN VIEW OF ITER DESIGN

机译:从ITER设计的角度看水消解和低温蒸馏的综合测试

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One of the main concerns related to licensing of ITER is the amount of potentially tritium release into the environment and the qualification of the barriers against tritium release. The final barrier of tritium release from fuel cycle is the Water Detritiation System (WDS) which will be operated in combination with the Isotope Separation System (ISS). To investigate the performances of various components of these systems, an experimental facility based on Combined Electrolysis Catalytic Exchange (CECE) process with a Cryogenic Distillation (CD) process was built at Tritium Laboratory Karlsruhe. The investigations are focused on two main issues: to quantify the separation performances of deuterium and tritium within the Liquid Phase Catalytic Exchange (LPCE) and CD processes in steady state and in dynamic mode of operation and to develop an integrated control system to be used in ITER ISS, in order to minimize the tritium inventory and to reduce at maximum extent the tritium releases. At TLK the two systems, CECE and CD have been commissioned and the experimental program and preliminary functionality tests of the main components are presented.
机译:与国际热核实验堆许可有关的主要问题之一是tri向环境中的潜在释放量以及the释放障碍的资格。 fuel从燃料循环中释放出来的最后障碍是水净化系统(WDS),它将与同位素分离系统(ISS)结合使用。为了研究这些系统的各个组件的性能,在Tri实验室的卡尔斯鲁厄建立了一个基于联合电解催化交换(CECE)工艺和低温蒸馏(CD)工艺的实验设施。研究集中在两个主要问题上:量化在稳态和动态操作模式下液相催化交换(LPCE)和CD过程中氘和tri的分离性能,并开发一种集成控制系统以用于ITER ISS,以便最大程度地减少inventory的存量并最大程度地减少the的释放。在TLK,CECE和CD这两个系统已经调试完毕,并介绍了主要组件的实验程序和初步功能测试。

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