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In situ Raman spectroscopic investigation of zirconium-niobium alloy corrosion under hydrothermal conditions

机译:水热条件下锆铌合金腐蚀的原位拉曼光谱研究

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In situ Raman spectroscopy was employed to investigate corrosion of a zirconium-niobium alloy in air-saturated water at a pressure of 15.5 MPa and temperatures ranging from 22 to 407 degreesC in an optically accessible flow cell. Monoclinic ZrO2 (m-ZrO2) was identified under all conditions after the coupon was heated to 255 degreesC for 19 h. Cubic ZrO2 (c-ZrO2) was tentatively identified in situ during heating at temperatures between 306 and 407 degreesC, but was not observed under any other conditions. Species tentatively identified as alpha -CrOOH and a Cr-VI and/or Cr-III/Cr-VI compound were observed in situ during heating at temperatures between 255 and 407 degreesC but were not observed under any other conditions. The chromium compounds were identified as corrosion products released from the optical cell and/or flow system. Published by Elsevier Science B.V. [References: 53]
机译:在光学可访问的流通池中,在压力为15.5 MPa和温度范围为22到407℃的条件下,原位拉曼光谱法研究了锆铌合金在空气饱和水中的腐蚀。将试样块加热到255摄氏度19 h后,在所有条件下均鉴定出单斜晶ZrO2(m-ZrO2)。在306至407摄氏度之间的加热过程中,初步确定了立方ZrO2(c-ZrO2),但在任何其他条件下均未观察到。初步鉴定为α-CrOOH和Cr-VI和/或Cr-III / Cr-VI化合物的物种是在255至407℃之间加热的过程中原位观察到的,但在任何其他条件下均未观察到。铬化合物被鉴定为是从光学元件和/或流动系统释放的腐蚀产物。由Elsevier Science B.V.发布[参考:53]

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