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Impact of Antifoam Agent Addition on Hydrogen Formation in the Hanford Waste Treatment and Immobilization Plant

机译:Hanford废物处理和固定化工厂中添加消泡剂对氢形成的影响

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Ventilation and mixing systems in the Hanford Waste Treatment and Immobilization Plant (WTP) are being designed to account for the flammable gas hydrogen that will form in process streams, just as it also does in the radioactive liquid wastes awaiting immobilization at the Hanford Tank Farms. Tank wastes forming hydrogen at the highest rates do so by reactions involving dissolved organic com-plexant compounds, even though hydrogen is also formed by the better known radiolysis pathway. Hydrogen generation rates (HGRs) are predicted with a correlation relating waste properties to reaction pathways involving radiolysis of water and the degradation of organic compounds. This correlation accounts only for aqueous phase reactions. An antifoam agent (AFA) will be added to waste processed in the WTP. This organic liquid mixture is immiscible in aqueous systems and will therefore form a nonaqueous phase liquid layer on the processed waste, unless some of its compounds are unstable in the hostile physical/chemical environment and break down into soluble degradation products. Dissolved organic species increase the organic source term in the WTP HGR correlation, but the correlation requires adaptation to address hydrogen formed from immiscible organic liquids. Here, we report our initial evaluation of the hydrogen formed by ~(60)Co gamma irradiation of a waste simulant containing Dow Corning Q2-3183A AFA with an adapted WTP HGR correlation.
机译:汉福德废物处理和固定化工厂(WTP)的通风和混合系统旨在解决工艺流中将形成的可燃气体氢,就像在汉福德储罐区等待固定化的放射性液体废物中一样。尽管氢也通过更广为人知的辐射分解途径形成,但通过涉及溶解的有机络合化合物的反应,以最高速率生成氢的罐式废物也可以这样做。预测氢气产生速率(HGR),并将废物性质与涉及水辐射分解和有机化合物降解的反应路径相关联。这种相关性仅解释了水相反应。消泡剂(AFA)将添加到WTP中处理的废物中。这种有机液体混合物在水系统中是不溶混的,因此将在处理后的废物上形成非水相液体层,除非其某些化合物在不利的物理/化学环境中不稳定并分解成可溶性降解产物。溶解的有机物增加了WTP HGR相关性中的有机物源项,但是该相关性需要进行调整以解决由不混溶的有机液体形成的氢。在这里,我们报告了由〜(60)Coγ辐射形成的氢的初步评估,该辐射模拟了含有适应性WTP HGR相关性的道康宁Q2-3183A AFA的模拟废物。

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