Pacific Northwest National Laboratory, Richland, WA, 99354, United States.
Pacific Northwest National Laboratory, Richland, WA, 99354, United States.
J Hazard Mater. 2019 Feb 15;364:69-77. doi: 10.1016/j.jhazmat.2018.09.064. Epub 2018 Oct 6.
Technetium-99 (Tc) incorporation within stable spinel phases is a novel method for Tc removal and immobilization from waste streams. In this study, transformation of Ni-doped Fe(OH)(s) to spinel minerals, e.g. trevorite (NiFeO), is explored as a method for removing Tc from Hanford Waste Treatment and Immobilization Plant (WTP) primary off-gas waste stream simulant. The Fe(OH)(s) transformation process was found to reduce Tc(VII) to Tc(IV) and incorporate reduced Tc(VI) into the produced spinel simultaneously. Nickel doping was applied in the mineral transformation to inhibit potential reoxidation of Tc(IV). Solid phase characterization by XRD and XANES confirmed the formation of nickel substituted ferric-spinel, and suggest incorporation of Tc(IV) in the final spinel. Furthermore, in the primary off-gas stream, which contains both redox-sensitive contaminants Cr(VI) and Tc(VII), results from solution analysis and solid digestion indicate that nearly 100% Cr and over 80% Tc can be simultaneously removed by adding Fe(OH)(s) to solution with a solid to solution ratio of 5 g/L under near neutral and alkaline conditions. The Tc removal approach developed herein provides an alternative treatment method to eliminate the proposed recycle process of the off-gas waste stream, which ultimately can reduce WTP mission cost and operation time.
锝-99(Tc)在稳定尖晶石相中掺入是从废物流中去除和固定 Tc 的一种新方法。在这项研究中,探索了掺杂镍的 Fe(OH)(s)向尖晶石矿物(例如镍铁尖晶石)的转化,作为从 Hanford 废物处理和固化厂(WTP)主要废气废物流模拟物中去除 Tc 的方法。发现 Fe(OH)(s)转化过程将 Tc(VII)还原为 Tc(IV),并同时将还原的 Tc(VI)掺入生成的尖晶石中。在矿物转化中应用镍掺杂以抑制 Tc(IV)的潜在再氧化。通过 XRD 和 XANES 进行的固相表征证实了镍取代铁尖晶石的形成,并表明 Tc(IV)在最终尖晶石中的存在。此外,在主要废气流中,同时含有氧化还原敏感的污染物六价铬(Cr(VI))和七价锝(Tc(VII)),溶液分析和固相消解的结果表明,在近中性和碱性条件下,将 Fe(OH)(s)添加到溶液中,固液比为 5 g/L,几乎可以同时去除 100%的 Cr 和超过 80%的 Tc。本文开发的 Tc 去除方法提供了一种替代处理方法,可消除废气废物流的拟议循环过程,这最终可以降低 WTP 任务成本和运行时间。