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A PRACTICAL PROCESS FOR LIGHT-WATER DETRITIATION AT LARGE SCALES

机译:大尺度光水降解的实用过程

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AECL and Tyne Engineering have recently completed a preliminary engineering design for a modest-scale tritium removal plant for light water, intended for installation at AECL's Chalk River Laboratories (CRL). This plant design was based on the Combined Electrolysis and Catalytic Exchange (CECE) technology developed at CRL over many years and demonstrated there and elsewhere. The general features and capabilities of this design have been reported as well as the versatility of the design for separating any pair of the three hydrogen isotopes. The same CECE technology could be applied directly to very large-scale wastewater detritiation, such as the case at Fukushima Daiichi Nuclear Power Station. However, since the CECE process scales linearly with throughput, the required capital and operating costs are substantial for such large-scale applications. This paper discusses some options for reducing the costs of very large-scale detritiation. Options include: Reducing tritium removal effectiveness; Energy recovery; Improving the tolerance of impurities; Use of less expensive or more efficient equipment. A brief comparison with alternative processes is also presented.
机译:AECL和Tyne Engineering最近已经完成了一个适中规模的轻水tri去除厂的初步工程设计,该厂打算安装在AECL的查尔克河实验室(CRL)上。该工厂设计基于CRL多年开发的电解和催化交换联合技术(CECE),并在当地和其他地方得到了证明。已经报道了该设计的一般特征和功能,以及用于分离三种氢同位素中的任何一对的设计的多功能性。相同的CECE技术可以直接应用于超大规模废水处理,例如福岛第一核电站。但是,由于CECE工艺与产量呈线性比例关系,因此对于此类大规模应用而言,所需的资金和运营成本相当可观。本文讨论了一些降低超大规模毁灭成本的方法。选项包括:降低removal的去除效率;能量恢复;提高杂质的耐受性;使用更便宜或更有效的设备。还简要介绍了与替代过程的比较。

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