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ADSORPTION AND DESORPTION BEHAVIOR OF TRITIATED WATER ON THE PIPING MATERIALS

机译:废水在管道材料上的吸附和脱附行为

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The behavior of tritium on the surface of various piping materials must be investigated for establishment of the safety confinement technology of tritium or for development of the effective fuel handling technology in a D-T fusion reactor, because tritiated water or gaseous tritium is captured on the piping surface through adsorption or isotope exchange reaction. The present authors carried out the water adsorption and desorption experiments on 304 stainless steel, copper, and aluminum in the temperature range from 5 to 100 degrees C and in the partial pressure range of water vapor between 11.8 and 198 Pa using a breakthrough method and quantified the amount of water adsorbed and the overall mass transfer coefficients in adsorption and desorption of water. It was observed in this study that aluminum adsorbed more water than stainless steel or copper. It was also observed that the adsorption and desorption rates of water for three materials showed almost the same values. The breakthrough behavior of tritiated water in a 100m pipe of stainless steel was also evaluated applying the results of this work. It is concluded that water adsorption and desorption reactions influence the behavior of tritiated water in the piping system under the condition where the partial pressure of tritiated water vapor is lower than several pascals. [References: 5]
机译:为了建立of的安全限制技术或开发DT聚变反应堆中有效的燃料处理技术,必须研究of在各种管道材料表面上的行为,因为tri化的水或气态tri被捕获在管道表面上通过吸附或同位素交换反应。作者采用突破方法对温度范围为5至100摄氏度,水蒸气分压范围为11.8至198 Pa的304不锈钢,铜和铝进行了水吸附和解吸实验,并进行了定量分析。水的吸附量以及水的吸附和解吸的总传质系数。在这项研究中观察到,铝比不锈钢或铜吸收的水更多。还观察到三种材料对水的吸附和解吸速率显示几乎相同的值。运用这项工作的结果,还评估了ti水在100m不锈钢管中的穿透行为。结论是,在vapor化水蒸气分压低于几帕斯卡的条件下,水的吸附和解吸反应影响sorption化水在管道系统中的行为。 [参考:5]

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