首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >Observations of surface-mediated reduction of Pu(VI) to Pu(IV) on hematite nanoparticles by ATR FT-IR
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Observations of surface-mediated reduction of Pu(VI) to Pu(IV) on hematite nanoparticles by ATR FT-IR

机译:ATR FT-IR观察赤铁矿纳米粒子表面介导的Pu(VI)还原为Pu(IV)

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摘要

Previous studies have shown that mineral surfaces may facilitate the reduction of plutonium though the mechanisms of the reduction are still unknown. The objective of this study is to use batch sorption and attenuated total reflectance Fourier transform infrared spectroscopy experiments to observe the surface-mediated reduction of plutonium on hematite nanoparticles. These techniques allow for in situ measurement of reduction of plutonium with time and may lead to a better understanding of the mechanisms of surface mediated reduction of plutonium. For the first time, ATR FT-IR peaks for Pu(VI) sorbed to hematite are measured at similar to 916 cm(-1), respectively. The decrease in peak intensity with time provides a real-time, direct measurement of Pu(VI) reduction on the hematite surface. In this work pseudo first order rate constants estimated at the high loadings (22mg(Pu)/g(hematite), 1.34 x 10(-6) M-Pu/m(2)) for ATR FT-IR are approximately 10x slower than at trace concentrations based on previous work. It is proposed that the reduced rate constant at higher Pu loadings occurs after the reduction capacity due to trace Fe(II) has been exhausted and is dependent on the oxidation of water and possibly electron shuttling based on the semiconducting nature of hematite. Therefore, the reduction rate at higher loadings is possibly due to the thermodynamic favorability of Pu(IV)-hydroxide complexes.
机译:先前的研究表明,矿物表面可能有助于facilitate的还原,尽管还原机理尚不清楚。这项研究的目的是使用分批吸附和衰减全反射傅里叶变换红外光谱实验来观察he在赤铁矿纳米粒子上的表面介导还原。这些技术允许随时间原位测量of的还原,并可能导致对表面介导的reduction还原机理的更好理解。第一次,吸附到赤铁矿的Pu(VI)的ATR FT-IR峰分别在类似于916 cm(-1)处测量。峰值强度随时间的下降可实时,直接地测量赤铁矿表面上Pu(VI)的减少。在这项工作中,在ATR FT-IR的高负荷(22mg(Pu)/ g(赤铁矿),1.34 x 10(-6)M-Pu / m(2))时估算的伪一级速率常数大约比ATR FT-IR慢约10倍以先前的工作为基础的痕量浓度。有人提出,在较高的Pu负载下,速率常数的降低发生在由于痕量Fe(II)导致的还原能力耗尽之后,并且取决于赤铁矿的半导体性质,它取决于水的氧化以及可能的电子穿梭。因此,较高负载下的还原速率可能归因于Pu(IV)-氢氧化物配合物的热力学适应性。

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