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Reduction of uranium oxide U3O8 into uranium dioxide UO2 by ammonia

机译:氨将氧化铀U3O8还原为二氧化铀UO2

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The reduction of uranium oxide U3O8 into uranium dioxide UO2 has been studied by temperature-programmed thermogravimetry, up to 700 degreesC. Experiments have been carried our either in ammonia(P-NH3 ranging from 35 to 125 hPa) or hydrogen (P-H2 ranging from 42 to 243 hPa), The gases evolved and consumed during the reduction were followed simultaneously by mass spectrometry. The reduction of U3O8 by ammonia into UO2 begins at 550 degreesC, and is completed at about 650 degreesC. It has been noticed that ammonia decomposition occurs at 700 degreesC; moreover, it is catalysed by UO2 produced by the reduction of U3O8, since no decomposition is observed in the absence of UO2. Besides, some isothermal experiments carried out at 510 degreesC have confirmed that ammonia reacts directly with U3O8 since the shape of the curves obtained either in ammonia or in hydrogen are different, particularly, the reaction is faster with ammonia compared to hydrogen, for the same partial pressure of the reducing gas. (C) 2001 Elsevier Science B.V. All rights reserved. [References: 4]
机译:已经通过温度编程的热重分析法(最高可达700摄氏度)研究了将氧化铀U3O8还原为二氧化铀UO2。我们已经在氨(P-NH3范围从35至125 hPa)或氢气(P-H2范围从42至243 hPa)中进行了实验。在还原过程中放出并消耗的气体同时进行了质谱分析。氨将U3O8还原为UO2的过程始于550摄氏度,并在约650摄氏度完成。已经注意到,氨分解在700℃发生。此外,由于在没有UO 2的情况下未观察到分解,因此它被U 3 O 8还原产生的UO 2催化。此外,在510摄氏度下进行的一些等温实验已经证实,氨气与U3O8直接反应,因为在氨气或氢气中获得的曲线形状不同,特别是对于相同的部分氨气,与氢气相比,反应更快。还原气体的压力。 (C)2001 Elsevier Science B.V.保留所有权利。 [参考:4]

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