Pénélope R, Campayo L, Fournier M, Le Gallet S, Gossard A, Grandjean A
CEA, DES, ISEC, DE2D, Université de Montpellier, Marcoule, France.
ICB, UMR 6303 CNRS-Université Bourgogne Franche-Comté, Dijon, France.
Front Chem. 2022 Dec 21;10:1085868. doi: 10.3389/fchem.2022.1085868. eCollection 2022.
New lead-vanadate based sorbents were synthesized with the aim to entrap and confine gaseous iodine in off-gas streams coming from reprocessing facilities of spent nuclear fuel. Their synthesis relies on the shaping of a lead-vanadate, lead sulfide and alginic acid mix as millimetric beads. These beads were calcined between 220°C and 500°C to remove organic alginic compounds template. However, according to the calcination temperature, lead sulfide could be partially oxidized, limiting iodine loading capacity. A compromise temperature between 290°C and 350°C was found to remove most of the alginic acid template and avoiding lead sulfide oxidation. These sorbents were tested for iodine trapping in static conditions at 60°C. They performed well with a sorption capacity up to 155 mg.g by forming PbI. Furthermore, these iodine-loaded sorbents could be easily converted into an iodine-containing lead-vanadate apatite matrix by spark plasma sintering. A dense sample was produced for a sintering temperature of 500°C under 70 MPa. Such a material could be suitable for radioactive iodine conditioning in deep geological disposal. Finally, lead-vanadate sorbents could provide an easy way to entrap and confine radioactive iodine from off-gas streams into a durable material within a few steps.
合成了新型的基于钒酸铅的吸附剂,旨在捕获和固定来自乏核燃料后处理设施废气流中的气态碘。它们的合成依赖于将钒酸铅、硫化铅和海藻酸混合物成型为毫米级珠子。这些珠子在220°C至500°C之间煅烧以去除有机海藻酸化合物模板。然而,根据煅烧温度,硫化铅可能会部分氧化,从而限制碘的负载能力。发现290°C至350°C之间的折衷温度可以去除大部分海藻酸模板并避免硫化铅氧化。这些吸附剂在60°C的静态条件下进行了碘捕获测试。它们表现良好,通过形成PbI,吸附容量高达155 mg.g。此外,这些负载碘的吸附剂可以通过放电等离子烧结轻松转化为含碘的钒酸铅磷灰石基质。在70 MPa下,烧结温度为500°C时制备出了致密样品。这种材料可能适用于深层地质处置中的放射性碘处理。最后,钒酸铅吸附剂可以提供一种简单的方法,在几步之内将废气流中的放射性碘捕获并固定到一种耐用材料中。