Meinhardová Vendula, Dubnová Lada, Drobná Helena, Matějová Lenka, Kočí Kamila, Čapek Libor
Faculty of Chemical Technology, University of Pardubice, Pardubice, Czechia.
Institute of Environmental Technology, VŠB-Technical University of Ostrava, Ostrava Poruba, Czechia.
Front Chem. 2023 Sep 20;11:1271410. doi: 10.3389/fchem.2023.1271410. eCollection 2023.
The use of an irradiation source with a homogeneous distribution of irradiation in the volume of the reaction mixture belongs to the essential aspects of heterogeneous photocatalysis. First, the efficacy of six lamps with various radiation intensity and distribution characteristics is contrasted. The topic of discussion is the photocatalytic hydrogen production from a methanol-water solution in the presence of a NiO-TiO photocatalyst. The second section is focused on the potential of a micro-photoreactor system-the batch reactor with a micro-reactor with a circulating reaction mixture, in which the photocatalytic reaction takes place using TiO immobilized on borosilicate glass. Continuous photocatalytic hydrogen generation from a methanol-water solution is possible in a micro-photoreactor. This system produced 333.7 ± 21.1 µmol H (252.8 ± 16.0 mmol.m, the hydrogen formation per thin film area) in a reproducible manner during 168 h.
在反应混合物体积内使用具有均匀辐照分布的辐照源属于多相光催化的关键方面。首先,对比了六种具有不同辐射强度和分布特性的灯的效能。讨论的主题是在NiO-TiO光催化剂存在下,由甲醇-水溶液进行光催化产氢。第二部分聚焦于微光反应器系统的潜力——带有循环反应混合物的微型反应器的间歇式反应器,其中光催化反应使用固定在硼硅酸盐玻璃上的TiO进行。在微光反应器中,由甲醇-水溶液持续光催化产氢是可能的。该系统在168小时内以可重复的方式产生了333.7±21.1µmol H₂(252.8±16.0mmol·m⁻²,每薄膜面积的氢生成量)。