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首页> 外文期刊>Chemical engineering journal >A Novel Prototype Offset Multi Tubular Photoreactor (OMTP) for solar photocatalytic degradation of water contaminants
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A Novel Prototype Offset Multi Tubular Photoreactor (OMTP) for solar photocatalytic degradation of water contaminants

机译:一种新型原型偏移多管式光反应器(OMTP),用于水污染物的太阳能光催化降解

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摘要

The design and operation of a new solar photoreactor prototype named Offset Mull Tubular Photoreactor (OMTP) is presented. The OMTP advances over the compound parabolic collector (CPC) photoreactor, which is one of the most efficient design for large-scale solar detoxification of water and wastewater. The OMTP design is based on a simple modification of the common CPC and included a supplementary set of tubes in the space occupied by the axes of intersection of the CPC reflective involutes. This new reactor configuration increased the irradiated reactor volume by 79% and the fluid residence time by up to 1.8-fold in comparison to the CPC, for the same solar irradiated area (footprint). The model parameters used for comparing and scaling the OMPT and CPC were beta (reactor volume/total volume), a (area of absorption/total volume), alpha(g) (physical area/total volume), degradation efficiency eta(alpha) per unit area, and the operating volume. The total solar energy absorbed in the reactors (1.74 m(2) footprint) was 15.17 W for the CPC and 21.86 W for the OMTP, which represents an overall gain of 44% for the latter. The performance of the OMTP and CPC were compared at the same value of solar exposure, beta of 0.3 with optimal photocatalyst loading of 0.25 g/L titanium dioxide (TiO2 P25). The degradation efficiencies of methylene blue, dichloroacetic acid, 4-chlorophenol (120 ppm initial concentration) in the OMTP were up to 81%, 125%, 118% and 242% higher, respectively, in comparison to the CPC after 8000 J/m(2) of accumulated solar energy. The OMTP should outperform the CPC in environmental and renewable energy applications of solar heterogeneous photocatalysis.
机译:提出了新的太阳能光反应器原型的设计和操作命名为偏移仔细声光反应器(OMTP)。 OMTP通过复合抛物线收集器(CPC)光反应器推进,这是水和废水的大型太阳能解毒最有效的设计之一。 OMTP设计基于公共CPC的简单修改,并包括CPC反射渐开幕的CPC交叉轴占据的空间中的辅助管。与CPC相比,这种新的反应器构造将辐照反应器体积和流体停留时间相比增加至1.8倍,对于相同的太阳照射区域(占地面积)。用于比较和缩放OMPT和CPC的模型参数是β(反应堆体积/总体积),a(吸收/总体积面积),α(g)(物理区域/总体积),降解效率Eta(alpha)每单位面积和操作量。在反应器中吸收的总太阳能(1.74米(2)足迹)为CPC为15.17W,对于OMTP为21.86 W,这对于后者表示整体增益44%。将OMTP和CPC的性能进行比较在太阳能暴露,β0.3的相同值,具有0.25g / L二氧化钛的最佳光催化载荷(TiO 2 P25)。在8000 j / m后,与CPC相比,OMTP中亚甲基蓝色二氯乙酸,4-氯苯酚(120ppm初始浓度为120ppm初始浓度)的降解效率分别高达81%,125%,118%和242%, (2)积累太阳能。 OMTP应优于太阳能异质光催化的环境和可再生能源应用中的CPC。

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