Dipartimento di Ingegneria Civile e Architettura, Università di Catania, Viale Andrea Doria 6, 95125, Catania, Italy; Laboratori Nazionali del Sud - Istituto Nazionale di Fisica Nucleare, Via S. Sofia, 62 - 95125, Catania, Italy.
Dipartimento di Ingegneria Civile e Architettura, Università di Catania, Viale Andrea Doria 6, 95125, Catania, Italy.
Chemosphere. 2020 Jul;251:126582. doi: 10.1016/j.chemosphere.2020.126582. Epub 2020 Mar 24.
The present study evaluates the concept of permeable reactive barrier (PRB) coupled with microwaves (MWs) as in situ-regenerating technology with focus on Cs-contaminated water. Experimental and modelling results data from batch and column tests were carried out, evaluating several chemical-physical and environmental parameters. Main results showed a very rapid increase in GAC temperature during MW irradiation up to ∼680 °C. This highlights the GAC strong ability to transform MW power into heat due to GAC excellent dielectric properties (ε' = 13.8). Physical characterization revealed that GAC pore volume and specific surface area change with the number of regeneration cycles. GAC regeneration efficiency variation reflects this behaviour with a maximum value of ∼112% (5th cycle). The final GAC weight loss of ∼7% further demonstrates GAC life span preservation during MW irradiation. Results from column tests confirms that GAC can be regenerated by MW also in dynamic condition, due to sublimation/vaporization and vapour stripping Cs removal mechanisms and that the regeneration effectiveness is time-dependent. The breakthrough curve shape confirms significant benefits from MW irradiation. Overall, obtained finding demonstrated the feasibility of the proposed concept, also providing essential data to guide its scaling-up application.
本研究评估了将可渗透反应屏障 (PRB) 与微波 (MWs) 相结合作为原位再生技术的概念,重点是 Cs 污染水。进行了批处理和柱试验的实验和建模结果数据评估了几种物理化学和环境参数。主要结果表明,在 MW 辐射期间,GAC 温度非常迅速地增加到约 680°C。这突出了 GAC 将 MW 功率转化为热量的强大能力,因为 GAC 具有优异的介电性能(ε'= 13.8)。物理特性分析表明,GAC 的孔体积和比表面积随再生循环次数而变化。GAC 再生效率的变化反映了这种行为,最高值约为 112%(第 5 个循环)。最终 GAC 的重量损失约为 7%,进一步证明了在 MW 辐射期间 GAC 寿命的延长。柱试验结果证实,由于升华/蒸发和汽提 Cs 去除机制,GAC 也可以在动态条件下通过 MW 进行再生,并且再生效果是时间相关的。穿透曲线的形状证实了 MW 辐射的显著益处。总体而言,所获得的发现证明了所提出概念的可行性,同时还提供了指导其放大应用的必要数据。