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Initial Approximation to the Design and Construction of a Photocatalysis Reactor for Phenol Degradation with TiO2 Nanoparticles

机译:TiO2纳米粒子降解苯酚的光催化反应器设计与构建的初步近似

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A photoreactor was designed, built, and optimized to carry out the degradation of phenol. To achieve this, phenol concentration was used as the reference to compare the photocatalysis reaction efficiency obtained through this research with results from other studies. Additionally, during the building process, different types of glass were evaluated with the objective of finding a functional and economic material to build the photoreactor. It was found that Pyrex glass was the most suitable material to work with. As a UV light source to build the photoreactor, a dry gel nail lamp was used with 9 W, λ = 365 nm bulbs. On the other hand, the effects of different parameters (such as the catalyst mass (TiO2 Degussa P-25), stirring speed (RPM), UV lamps, and temperature) over the photocatalysis reaction rate were analyzed. Also, the reaction’s thermodynamic parameters were determined and found to be similar to those found in other investigations. Finally, the homogeneity in the distribution of TiO2 particles inside the reactor when stirred at 475 rpm was verified using a COMSOL Multiphysics computer fluid dynamics simulation, which showed the theoretical trajectory of particles inside the reactor depending on the stirring rate of the reactor.
机译:设计,制造和优化光反应器以进行苯酚的降解。为达到此目的,以苯酚浓度为参考,将通过本研究获得的光催化反应效率与其他研究结果进行比较。另外,在构建过程中,对各种类型的玻璃进行了评估,目的是寻找一种功能经济的材料来构建光反应器。发现派热克斯玻璃是最合适的材料。作为构建光反应器的紫外线光源,使用了干胶指甲灯和9 Wλ= 365 nm灯泡。另一方面,分析了不同参数(例如催化剂质量(TiO2 Degussa P-25),搅拌速度(RPM),紫外线灯和温度)对光催化反应速率的影响。另外,确定了反应的热力学参数,发现该参数与其他研究相似。最后,使用COMSOL Multiphysics计算机流体动力学仿真验证了以475 rpm搅拌时反应器内TiO2颗粒分布的均匀性,该仿真显示了反应器内颗粒的理论轨迹取决于反应器的搅拌速率。

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