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通过 CE-ICP-MS 对镎进行灵敏的氧化还原形态分析。

Sensitive redox speciation of neptunium by CE-ICP-MS.

机构信息

Institute of Nuclear Chemistry, Johannes Gutenberg-Universität Mainz, Fritz-Straßmann-Weg 2, 55128, Mainz, Germany,

出版信息

Anal Bioanal Chem. 2012 Nov;404(8):2143-50. doi: 10.1007/s00216-012-6423-7. Epub 2012 Oct 3.

Abstract

Capillary electrophoresis (CE) was used to separate the neptunium oxidation states Np(IV) and Np(V), which are the only oxidation states of Np that are stable under environmental conditions. The CE setup was coupled to an inductively coupled plasma mass spectrometer (Agilent 7500ce) using a Mira Mist CE nebulizer and a Scott-type spray chamber. The combination of the separation capacity of CE with the detection sensitivity of inductively coupled plasma mass spectrometry (ICP-MS) allows identification and quantification of Np(IV) and Np(V) at the trace levels expected in the far field of a nuclear waste repository. Limits of detection of 1 × 10(-9) and 5 × 10(-10) mol L(-1) for Np(IV) and Np(V), respectively, were achieved, with a linear range from 10(-9) to 10(-6) mol L(-1). The method was applied to study the redox speciation of the Np remaining in solution after interaction of 5 × 10(-7) mol L(-1) Np(V) with Opalinus Clay. Under mildly oxidizing conditions, a Np sorption of 31% was found, with all the Np remaining in solution being Np(V). A second sorption experiment performed in the presence of Fe(2+) led to complete sorption of the Np onto the clay. After desorption with HClO(4), a mixture of Np(IV) and Np(V) was found in solution by CE-ICP-MS, indicating that some of the sorbed Np had been reduced to Np(IV) by Fe(2+).

摘要

毛细管电泳 (CE) 用于分离 Neptunium 的氧化态 Np(IV) 和 Np(V),这是 Neptunium 在环境条件下唯一稳定的氧化态。CE 装置通过 Mira Mist CE 雾化器和 Scott 型喷雾室与电感耦合等离子体质谱仪 (Agilent 7500ce) 耦合。CE 的分离能力与电感耦合等离子体质谱法 (ICP-MS) 的检测灵敏度相结合,允许在核废物库远场中预期的痕量水平下识别和定量 Np(IV) 和 Np(V)。分别实现了 Np(IV) 和 Np(V) 的检测限为 1×10(-9) 和 5×10(-10) mol L(-1),线性范围为 10(-9) 至 10(-6) mol L(-1)。该方法应用于研究 5×10(-7) mol L(-1) Np(V) 与 Opalinus Clay 相互作用后溶液中剩余的 Np 的氧化还原形态。在轻度氧化条件下,发现 Np 的吸附率为 31%,溶液中所有的 Np 均为 Np(V)。在存在 Fe(2+) 的情况下进行的第二次吸附实验导致 Np 完全被吸附到粘土上。用 HClO(4) 解吸后,通过 CE-ICP-MS 在溶液中发现了 Np(IV) 和 Np(V) 的混合物,表明一些被吸附的 Np 已被 Fe(2+) 还原为 Np(IV)。

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