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A SMALL CLOSED-CYCLE COMBINED ELECTROLYSIS AND CATALYTIC EXCHANGE TEST SYSTEM FOR WATER DETRITIATION

机译:用于水处理的小闭环电解-催化交换测试系统

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摘要

AECL has been actively involved in exploring advanced electrolysis technologies for its Combined Electrolysis and Catalytic Exchange (CECE) technology for water detritiation. A small-scale CECE system (mini-CECE) has been built and operated at AECL to explore its operation as a closed-cycle system with a proton-exchange membrane (PEM) type electrolysis cell. A similar mini-CECE system suitable for service with tritium concentrations up to 1000 Ci/kg(water) has been assembled, in collaboration with Tyne Engineering, for installation in a glovebox in AECL's Tritium Facility. These systems were developed as test-beds for membranes that had been selected for their expected tritium resistance. The systems allowed the measurement of membrane performance over long periods at very high tritium concentrations, as well as the ability to monitor any effects of membrane degradation products on the performance of exchange and recombiner catalysts.Preliminary work has been done with Nafion-112 membrane samples by exposing them to gamma and beta radiation to determine their suitability for use in tritiated CECE system. Doses of up to 1250 kGy of gamma or 200 kGy of beta were applied. Visual observations showed that gamma irradiation at doses below 400 kGy produced severe damage to the membrane. No significant physical damage was observed for samples exposed to 200 kGy from tritiated water. However this level of exposure to either gamma or beta radiation was sufficient to significantly decrease membrane performance in fuel cell tests.
机译:AECL积极参与其先进的电解技术,以其用于水处理的组合电解和催化交换(CECE)技术。 AECL已建成并运行了一个小型CECE系统(mini-CECE),以探索其作为具有质子交换膜(PEM)型电解池的闭环系统的运行方式。与Tyne Engineering合作,已组装了类似的适用于service浓度高达1000 Ci / kg(水)的mini-CECE系统,以安装在AECL t工厂的手套箱中。这些系统被开发为用于膜的试验台,这些膜已根据预期的抗tri性进行了选择。该系统可长期测量高tri浓度下的膜性能,并具有监测膜降解产物对交换和重组催化剂性能的任何影响的能力.Nafion-112膜样品已完成初步工作通过将它们暴露在伽玛射线和β射线中,以确定它们是否适合在ti CECE系统中使用。施加了高达1250 kGy的γ或200 kGy的β剂量。视觉观察表明,低于400 kGy的伽马射线辐照会严重破坏膜。对于从tri水中暴露于200 kGy的样品,未观察到明显的物理损伤。但是,这种在γ射线或β射线下的暴露水平足以显着降低燃料电池测试中的膜性能。

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  • 来源
    《Fusion Science and Technology》 |2011年第4期|p.1347-1350|共4页
  • 作者单位

    Atomic Energy of Canada Limited, Chalk River Laboratories, Chalk River, Ontario, Canada, K0J 1J0;

    Atomic Energy of Canada Limited, Chalk River Laboratories, Chalk River, Ontario, Canada, K0J 1J0;

    Atomic Energy of Canada Limited, Chalk River Laboratories, Chalk River, Ontario, Canada, K0J 1J0;

    Atomic Energy of Canada Limited, Chalk River Laboratories, Chalk River, Ontario, Canada, K0J 1J0;

    Tyne Engineering Inc., Oakville, Ontario, Canada, L6L 6L4;

    Tyne Engineering Inc., Oakville, Ontario, Canada, L6L 6L4;

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