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首页> 外文期刊>Chemical Engineering and Processing >Performance of a multistage rotating mesh support photoreactor immobilized with TiO2 on photocatalytic degradation of PNP: Reactor construction and optimization
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Performance of a multistage rotating mesh support photoreactor immobilized with TiO2 on photocatalytic degradation of PNP: Reactor construction and optimization

机译:多级旋转网状物的性能,用TiO2固定在PNP的光催化降解中的固定剂:反应器结构和优化

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摘要

In this study, a novel multistage rotating mesh support photoreactor was designed and employed for investigation of photocatalytic degradation of p-Nitrophenol (PNP) in aqueous solution under UV irradiation. Electrophoretic deposition (EPD) method was applied for TiO2 immobilization on the stainless steel mesh supports and surface characterizations were carried out by XRD, SEM, and BET. Central composite design (CCD) method was employed to model and optimize the process. Based on the model prediction, maximum predicted and experimental photocatalytic degradation percent of PNP under the optimum conditions of recirculating flow rate = 61/min, rotational speed =76 rpm and number of TiO2 immobilized meshes = 24 were obtained to be 95.7% and 95.48%, respectively. Under the optimum condition, the effect of initial solution pH on the photocatalytic degradation process was investigated and the results indicated that the PNP degradation efficiency was enhanced by reducing the initial pH to 3.5. The reduction in TOC content under optimum condition was about 55% after 5 h. Moreover, pseudo-first-order model fitted the process kinetics perfectly.
机译:在该研究中,设计了一种新型多级旋转网状物载体光反应器,并采用UV照射下水溶液中对水溶液中对硝基苯酚(PNP)的光催化降解的研究。将电泳沉积(EPD)方法应用于TiO2固定物对不锈钢网载体的固定化,并通过XRD,SEM和BET进行表面表征。中央复合设计(CCD)方法用于模拟和优化该过程。基于模型预测,最大预测和实验光催化降解PNP在再循环流速= 61 / min的最佳条件下,转速= 76rpm和TiO2固定的网状物= 24的数量为95.7%和95.48% , 分别。在最佳条件下,研究了初始溶液pH对光催化降解过程的影响,结果表明,通过将初始pH降低至3.5,提高了PNP劣化效率。 5小时后,最佳条件下的TOC含量的降低约为55%。此外,伪第一阶模型完全拟合了工艺动力学。

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