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An Investigation on the Persistence of Uranium Hydride during Storage of Simulant Nuclear Waste Packages

机译:模拟核废料堆储存过程中氢化铀的持久性研究

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摘要

Synchrotron X-rays have been used to study the oxidation of uranium and uranium hydride when encapsulated in grout and stored in de-ionised water for 10 months. Periodic synchrotron X-ray tomography and X-ray powder diffraction have allowed measurement and identification of the arising corrosion products and the rates of corrosion. The oxidation rates of the uranium metal and uranium hydride were slower than empirically derived rates previously reported for each reactant in an anoxic water system, but without encapsulation in grout. This was attributed to the grout acting as a physical barrier limiting the access of oxidising species to the uranium surface. Uranium hydride was observed to persist throughout the 10 month storage period and industrial consequences of this observed persistence are discussed.
机译:同步加速器X射线用于研究将铀和氢化铀包裹在水泥浆中并在去离子水中储存10个月后的氧化。定期同步加速器X射线断层扫描和X射线粉末衍射可以测量和识别产生的腐蚀产物以及腐蚀速率。铀金属和氢化铀的氧化速率比先前报道的在缺氧水系统中每种反应物的经验得出的速率要慢,但是没有封装在水泥浆中。这归因于水泥浆作为物理屏障,限制了氧化物质进入铀表面。观察到氢化铀在整个10个月的存储期内都将持续存在,并讨论了这种持续存在的工业后果。

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