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首页> 外文期刊>Radiation Physics and Chemistry >DEHBA (di-2-ethylhexylbutyramide) gamma radiolysis under spent nuclear fuel solvent extraction process conditions
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DEHBA (di-2-ethylhexylbutyramide) gamma radiolysis under spent nuclear fuel solvent extraction process conditions

机译:DEHBA(二乙基己基丁胺)γ辐射在废核燃料溶剂萃取过程条件下

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Di-2-ethylhexylbutyramide (DEHBA) has been proposed as part of a hydro-reprocessing solvent extraction system for the co-extraction of uranium and plutonium from spent nuclear fuel. However, there remains a lack of quantitative understanding of the impact of chemical environment on the radiation chemistry of DEHBA, especially under conditions expected in real-world solvent extraction processes. Therefore, we have undertaken a systematic investigation into the radiolytic degradation of DEHBA in n-dodecane under fully aerated and biphasic conditions. DEHBA integrity and degradation product formation were measured for both extraction (in contact with 4.0 M HNO3(aq)) and stripping (in contact with 0.1 M HNO3(aq)) formulations. At the lower acidity the rate of DEHBA/n-dodecane degradation was slow (G = -0.26 +/- 0.02 mu M J(-1)) whereas at the higher acidity this degradation was about 35% faster (G= -0.35 +/- 0.02 mu M J(-1)). Both values were much less than analogous measurements under deaerated conditions. Under continuously aerated conditions, FTIR and ESI-MS measurements identified the two major degradation products, bis-2-ethylhexylamine (b2EHA) and N-(2-ethylhexyl)butyramide (MEHBA), as well as the presence of additional oxidized product species. Solvent system performance was also investigated using uranium extraction and strip distribution ratio measurements. These studies showed that there was only minimal change in uranium extraction and stripping performance with absorbed gamma dose.
机译:已经提出了二-2-乙基己基丁胺(DEHBA)作为水合物再加工溶剂萃取系统的一部分,用于共 - 燃料中共萃取铀和钚。然而,仍然缺乏对化学环境对DEHBA辐射化学影响的量化理解,特别是在现实世界溶剂提取过程中的条件下。因此,我们在完全充气和双相条件下对N-十二烷下Dehba的放射性降解进行了系统的调查。测量DEHBA完整性和降解产物形成,用于萃取(与4.0MHNO3(AQ)接触)并剥离(与0.1M HNO 3(AQ)接触)制剂。在较低的酸度下,DEHBA / N-十二烷劣化的速率缓慢(g = -0.26 +/-0.02μmj(-1)),而在较高的酸度下,这种降解的速度速度为约35%(g = -0.35 + / - 0.02 mu mj(-1))。在脱气条件下,两个值都小于类似的测量。在连续曝气的条件下,FTIR和ESI-MS测量鉴定了两种主要的降解产物,双-2-乙基己胺(B2EHA)和N-(2-乙基己基)丁酰胺(MeHBA),以及额外的氧化产物物种的存在。还使用铀提取和条带分布比测量研究了溶剂系统性能。这些研究表明,铀萃取和剥离性能均有最小的变化,具有吸收的γ剂量。

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