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Multi-criteria analysis of suitable technologies for the tritium removal system in Valcea D-T Pilot Plant

机译:Valcea D-T中试厂removal去除系统适用技术的多标准分析

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A pilot plant for tritium removal from tritiated water is in pre-operational stage at ICSI Ramnicu Valcea and it's based on catalytic isotopic exchange process (LPCE) between tritiated water and hydrogen/deuterium gas followed by cryogenic distillation (CD), aiming to recover tritium. As any detritiation plant or tritium processing plant/laboratory, the Experimental Pilot Plant for D-T separation (PESTD) from Rm. Valcea requires a tritium removal system (TRS) with the main purpose to recover tritium from purge gases used during maintenance of the technological systems prior to their discharge to environment and during normal operation of the plant. TRS is continuously connected to the tritiated water tanks within the plant for pressure management, similar as for ITER-WDS. In the specific case of the PESTD, TRS was given a secondary active role and that is to operate as follows: the gas inventory within CD could be reduce to water and returned to LPCE system in order to process it.This paper will present a multi-criteria analysis of the available technologies for the purpose of the TRS, together with a general schematic of the process selected and under implementation and some specifications of the equipment that constitute the final concept of the system.
机译:ICSI Ramnicu Valcea的tri化水中除tri试验工厂处于运行前阶段,它基于tri化水与氢气/氘气之间的催化同位素交换过程(LPCE),然后进行低温蒸馏(CD),旨在回收tri 。与任何毁灭性工厂或tri处理工厂/实验室一样,Rm中的D-T分离实验中试工厂(PESTD)。 Valcea需要一个removal去除系统(TRS),其主要目的是从技术系统维护期间使用的吹扫气体中排放tri,然后将其排放到环境中以及工厂正常运行期间。与ITER-WDS相似,TRS持续连接到工厂内的ti水罐进行压力管理。在PESTD的特定情况下,TRS被赋予了第二个积极角色,其运作方式如下:CD中的气体存量可以减少为水,然后返回LPCE系统进行处理。 -针对TRS目的的可用技术的标准分析,以及所选的和正在实施的过程的一般示意图以及构成系统最终概念的设备的某些规格。

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