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Comparison of release behavior of water vapor and tritiated water vapor from natural soil by heating

机译:加热后天然土壤中水蒸气和tri化水蒸气释放行为的比较

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In a water-cooled nuclear fusion power plant, a large amount of tritiated water will be handled. Assuming severe accidents including the release of tritiated water to the surrounding environment, it is important to understand the tritium behavior in natural soil. In this study, two samples of natural soil were collected from different places in the Hakozaki campus of Kyushu University and the release behavior of water vapor and that of tritium by heating to 1000°C were separately investigated and compared. Three release peaks of water vapor appeared at 120, 270 and 450°C for both samples. Also, three release peaks of tritium appeared at the approximately same temperature as water vapor release from both samples of soil immersed in tritiated water. The chemical form of released tritium was mainly tritiated water vapor. These results suggest that tritium sorbed in soil during immersion in tritiated water exists with water originally contained in the soil. The amount of tritium released from each sample soil by heating to 1000°C was estimated to be only about 15% of that expected to be sorbed in the soil. Tritium remaining in the soil after heating is presumed to be retained in structural water stably present in clay minerals constituting natural soil.
机译:在水冷核聚变电厂中,将处理大量tri化水。假设发生严重事故,包括of水向周围环境的释放,了解natural在自然土壤中的行为非常重要。在这项研究中,从九州大学箱崎校区的不同地方收集了两个天然土壤样品,并分别研究和比较了加热到1000°C时水蒸气和of的释放行为。两种样品在120、270和450°C出现三个水蒸气释放峰。另外,three的三个释放峰出现在与浸入tri化水中的两个土壤样品中的水蒸气释放几乎相同的温度下。释放的tri的化学形式主要是tri化的水蒸气。这些结果表明,在浸入tri化水中期间吸附在土壤中的tri与原先包含在土壤中的水一起存在。通过加热到1000°C,从每个样品土壤中释放出的tri量估计仅为预期吸附在土壤中的15的约15%。据推测,加热后残留在土壤中的被稳定地保留在构成天然土壤的粘土矿物中的结构水中。

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