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首页> 外文期刊>Health Physics: Official Journal of the Health Physics Society >AGHCF gaseous-effluent tritium sampling system: design considerations and performance testing results.
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AGHCF gaseous-effluent tritium sampling system: design considerations and performance testing results.

机译:AGHCF气态tri采样系统:设计注意事项和性能测试结果。

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摘要

Performance testing results involving the operation of a gaseous-effluent tritium sampling system are provided. A system description, including design improvements made over the course of several years of operation, is also presented. The sampling technique is based on using ethylene glycol bubblers for collecting tritiated water entrained as vapor in a nitrogen purge gas from a hot cell facility. Tritiated gas is converted to water vapor using a high temperature copper oxide bed; newly-formed water molecules are readily collected in a second set of ethylene glycol bubblers. For a single bubbler containing 20 mL of ethylene glycol, the tritium collection efficiency was determined to be 98.3%. To optimize performance and to minimize the volume of mixed waste generated, tests were performed to evaluate variations in the collection efficiency as a function of sorbent volume. For purposes of comparison the performance of water-filled bubblers was also evaluated. With two water bubblers connected in series the overall collection efficiency was quite satisfactory at 95.4%, although appreciable water losses were evident. The bed oxidation efficiency for tritiated gas was evaluated over a range of temperatures; at a catalyst bed temperature of 350 degrees C nearly all the gas was converted to water vapor. System memory effects were assessed by measuring the amount of residual contamination present in the bubblers after purging the sampling system for a week offline. Contamination problems arising from previous sampling periods were inconsequential. The overall uncertainty associated with the total quantity of tritium discharged to the environment based on the results of the performance testing was estimated to be +/-24% at the 95% confidence level.
机译:提供了涉及气态tri采样系统运行的性能测试结果。还介绍了系统描述,包括在运行几年中进行的设计改进。采样技术基于使用乙二醇鼓泡器,用于收集来自热室设备的氮气吹扫气中夹带的vapor化水作为蒸气。使用高温氧化铜床将化的气体转化为水蒸气;新形成的水分子很容易收集在第二套乙二醇起泡器中。对于包含20 mL乙二醇的单个起泡器,测得的collection收集效率为98.3%。为了优化性能并最大程度减少混合废物的产生,进行了测试以评估收集效率随吸附剂体积的变化。为了进行比较,还评估了水起泡器的性能。尽管有明显的失水现象,但在两个串联的起泡器串联的情况下,总的收集效率达到了95.4%,相当令人满意。在一定温度范围内评估tri化气体的床氧化效率。在350℃的催化剂床温度下,几乎所有的气体都转化为水蒸气。在将采样系统离线清洗一周后,通过测量起泡器中残留的污染物量来评估系统的内存效应。先前采样期间产生的污染问题是无关紧要的。根据性能测试的结果,与排放到环境中的the总量有关的总体不确定性在95%的置信水平下估计为+/- 24%。

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