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Experiment study and modeling of novel mini-bubble column photocatalytic reactor with multiple micro-bubbles

机译:多种微气泡新型小泡柱光催化反应器的实验研究与建模

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The performance of a 3 mm bubble column reactor with multiple micro-bubbles and immobilized Fe3+/TiO2 photocatalyst was studied by photocatalytic degradation of MB. The bubble flow with multiple micro-bubbles was realized by a novel gas-liquid distributor, which can disperse a single bubble with diameter of 1481 mu m into multiple micro-bubbles with average diameter of 432 mu m. The idea of discretization was introduced to build the radiation model and obtain the distribution of radiation flux density of absorbed light. Reaction kinetics model containing UV-light and visible light in which mass transfer was included was built. Experimental data were fitted with the model and the kinetics parameters were obtained. The influences of reaction conditions show that multiple micro-bubbles play an important role in improving mass transfer coefficient (k(L,mB)), surface concentration ([C-s,C-MB/C-MB](av)) and reaction rate constant (k(r)). When the gas holdup epsilon(G) increases from 0.0015 to 0.0110, the kr increases about 2.7 times. Compared with the single bubble flow, the k(L,mB) and k(r) of bubble flow with multiple micro-bubbles increase about 2 times, and the [C-s,C-MB/C-MB](av) also increases 2.25%. The quantum efficiency of visible light is much less than that of UV-light, which means that the utilization of visible light should be further improved.
机译:通过光催化降解MB的光催化降解,研究了具有多个微气泡和固定的Fe3 + / TiO2光催化剂的3mm气泡柱反应器的性能。具有多种微气泡的气泡流动通过新型气液分配器实现,其可以将单个气泡分散到具有平均直径为432μm的多个微气泡的单个气泡。引入了离散化的思想来构建辐射模型,并获得吸收光的辐射磁通密度的分布。含有UV光和可见光的反应动力学模型,建立了包含传质的可见光。实验数据配有该模型,获得动力学参数。反应条件的影响表明,多种微气泡在改善传质系数(K(L,Mb)),表面浓度([CS,C-MB / C-MB](AV))和反应速率方面发挥着重要作用常数(k(r))。当气体保持ε(g)从0.0015增加到0.0110时,KR增加约2.7倍。与单泡流量相比,具有多个微气泡的血泡流动的K(L,MB)和K(R)增加约2次,[Cs,C-MB / C-MB](AV)也增加2.25%。可见光的量子效率远小于UV光的效率,这意味着应进一步改善可见光的利用。

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