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TiO_2 water-bell photoreactor for wastewater treatment

机译:TiO_2水钟光反应器处理废水

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In spite of the intense academic research that has been conducted on the possibility of mineralization of a vast range of water pollutants using TiO2photocatalysis, the scale up to industrial scale and commercialization of TiO2photocatalysis treatment systems is still very limited. The design of a photocatalytic reactor that is simple, energy efficient, less expensive to build and operate is crucial for the development and widespread of TiO2photocatalysis.A solar photocatalytic reactor is designed and constructed. The reactor is based on generating a thin water film to allow for solar light penetration and continuous oxygenation. Recirculating the reaction solution at a high flow rate ensure good mixing and avoid dead zones in the photoreactor. Reactor performance for degradation of phenol, as a model compound, was evaluated using aeroxide P25. Factors affecting the degradation efficiency were studied including catalyst loading, light intensity, initial pollutant concentration, oxidant addition and exposure time. Dissolved oxygen levels, temperature and pH were monitored through all the conducted tests. The water-bell photoreactor performance was compared with other photoreactors using benchmarks: the degradation rate constant and the reactor throughput. The photoreactor is promising for scale-up and commercialization owing to its modular design, an integrated storage, simple and cheap components that are not susceptible to breakage and optical losses.
机译:尽管已经进行了大量关于使用TiO2光催化矿化多种水污染物的可能性的学术研究,但是TiO2光催化处理系统的工业规模规模化和商业化仍然非常有限。简单,节能,建造和运行成本较低的光催化反应器的设计对于TiO2光催化技术的发展和广泛应用至关重要。设计并构建了一种太阳能光催化反应器。该反应器基于产生薄的水膜以允许太阳光穿透和连续充氧。以高流速再循环反应溶液可确保良好的混合并避免光反应器中出现死区。使用过氧化物P25评估了作为模型化合物的苯酚降解反应器性能。研究了影响降解效率的因素,包括催化剂用量,光强度,初始污染物浓度,氧化剂添加量和暴露时间。通过所有进行的测试监测溶解氧水平,温度和pH。使用基准将水钟光反应器性能与其他光反应器进行了比较:降解速率常数和反应器生产量。光反应器由于其模块化设计,集成的存储,不易损坏和光学损失的简单且廉价的组件而有望实现规模化和商业化。

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