Laboratory of Separation and Reaction Engineering - Laboratory of Catalysis and Materials (LSRE-LCM), Department of Chemical Engineering, Faculty of Engineering, University of Porto, Rua do Dr. Roberto Frias, 4200-465, Porto, Portugal.
Photochem Photobiol Sci. 2018 Sep 12;17(9):1179-1188. doi: 10.1039/c8pp00006a.
A micro-meso-structured reactor (NETmix) was used for the first time to promote photochemical UVC/H2O2 processes. The NETmix photoreactor consists of a network of chambers and channels, where the liquid flows, sealed with a quartz slab with high UVC transparency. Due to the small size of channels and chambers, the NETmix presents a uniform irradiance through the entire reactor depth, short molecular diffusion distances and large specific interfacial areas, maximizing the pollutant/oxidant contact. In this study, the NETmix photoreactor was evaluated for As(iii) oxidation to As(v) using a photochemical UVC/H2O2 system. The effect of the UVC lamp power (4, 6 or 11 W), the number of UVC lamps (2 or 3 lamps) and the UVC lamp layout (parallel or perpendicular to the flow direction) was evaluated, in order to ensure uniform irradiation of the entire reaction mixture. The optimum H2O2 concentration for each light distribution system was also evaluated. At the best configuration, 3 lamps of 11 W positioned parallel to the flow direction, total As(iii) oxidation ([As(iii)]0 = 1.33 × 10-2 mM) was achieved in 15 min with an absorbed photon flux density of 1.9 × 10-1 einstein per m3 per s. Significant differences were highlighted between the photon flux actually received in the photoreactor and the radiant power emitted by the lamp. A kinetic model able to represent the As(iii) oxidation employing UVC radiation and H2O2 in a micro-meso-structured reactor was presented. The photochemical space time yield (PSTY) values obtained for the micro-meso-structured reactor are higher than for conventional batch reactors, showing that the NETmix technology can be a good solution for application in photochemical processes.
一种微介观结构反应器(NETmix)首次被用于促进光化学 UVC/H2O2 工艺。NETmix 光反应器由一个充满液体的腔室和通道网络组成,用具有高 UVC 透明度的石英板密封。由于通道和腔室的尺寸较小,NETmix 在整个反应器深度内呈现出均匀的辐照度,分子扩散距离短,比表面积大,最大限度地增加了污染物/氧化剂的接触。在这项研究中,使用光化学 UVC/H2O2 系统评估了 NETmix 光反应器对 As(iii)氧化为 As(v)的效果。评估了 UVC 灯功率(4、6 或 11 W)、UVC 灯数量(2 或 3 个灯)和 UVC 灯布局(平行或垂直于流动方向)的影响,以确保整个反应混合物的均匀辐照。还评估了每种光照分布系统的最佳 H2O2 浓度。在最佳配置下,采用 3 个 11 W 的灯,平行于流动方向放置,在 15 分钟内实现了总 As(iii)氧化([As(iii)]0 = 1.33 × 10-2 mM),吸收光子通量密度为 1.9 × 10-1 einstein per m3 per s。在光反应器中实际接收的光子通量与灯发出的辐射功率之间存在显著差异。提出了一个能够代表在微介观结构反应器中使用 UVC 辐射和 H2O2 氧化 As(iii)的动力学模型。获得的微介观结构反应器的光化学生产时空产率(PSTY)值高于传统间歇式反应器,表明 NETmix 技术可能是光化学工艺应用的一个很好的解决方案。