气泡与光催化技术在采出水中脱除BTEX中的联合效果

Marwah A. Al-Nuaim, Asawer A. Al-Wasiti, Zainb Y. Shnain, Abbas K. Al-Shalal
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引用次数: 3

摘要

在污水处理的几种方法中,光催化法是近年来越来越多地应用的一种新颖的替代方法。这项工作旨在通过使用气泡从采出水中去除BTEX作为工艺效率的指标来改善光催化剂工艺的性能。研究还显示了影响因素(pH和停留时间)对光催化过程的影响。该研究是在一个矩形柱中进行的,尺寸为200毫米宽,30毫米深,1500毫米高。用清漆涂在板上的商业氧化钛(TiO2)作为光催化剂的来源。实验在不同的气体流速值(0-3 L/min)下进行,评价其对光催化过程的影响,并研究了pH值(3-11)、照射时间(30-120)min等其他变量的影响。采用了一种新的涂膜方法,即在氧化铝板上涂上清漆作为粘合剂。表征结果表明,涂膜板具有亲水性,且在光催化60 h前后,TiO2纳米粒子和清漆的晶体结构没有明显变化,说明在不同条件下,涂膜板在使用60 h后仍然有效。结果还表明,气泡的引入显著提高了BTEX的去除率,当pH = 5时,90 min后BTEX的去除率达到93%,当pH = 3时,120 min后BTEX的去除率达到90%,当pH = 7时,在3 L/min的流速下,120 min后BTEX的去除率达到86%。当pH = 9和pH = 11时,去除率下降,在流速为3 L/min时,去除率分别为64%和50%。版权所有©2022作者所有,BCREC集团出版。这是一篇基于CC BY-SA许可(https://creativecommons.org/licenses/by-sa/4.0)的开放获取文章。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Combined Effect of Bubble and Photo Catalysis Technology in BTEX Removal from Produced Water
Among the several ways used in wastewater treatment, the photocatalysis process is a more novel and alternative process that is increasingly employed in recent years. This work aims to improve the performance of the photocatalyst process by using air bubbles in removing the BTEX from produced water as an indicator of process efficiency. The study also shows the effect of influencing factors (pH and residence time) on the photocatalysis process. The study was done in a rectangular column with dimensions of 200 mm width, 30 mm depth, and 1500 mm height. Commercial titanium oxide (TiO2) coated on a plate by the varnish was used as a source of the photocatalyst. The experiment was carried out under different values of gas flow rate (0-3 L/min) to evaluate its effect on the photocatalyst process, the effect of other variables of pH (3-11), and irradiation time (30-120) min was also studied. A new method of the coating was adopted by using an alumina plate with varnish as an adhesive. The characteristics results show that the coated plate has hydrophilic properties and that there is no significant change in the crystal structure of the TiO2 nanoparticles and the varnish before and after 60 h of the photocatalytic process, indicating that the plate is still effective after 60 h usage under different conditions. The results also show that the introduction of air bubbles enhances the removal efficiency of BTEX significantly and the best removal effectiveness of BTEX was 93% when pH = 5 after 90 min and 90% when pH = 3 after 120 min. The removal rate also reached 86% when pH = 7 after 120 min all at a flow rate of 3 L/min. The percentage of removal decreased at pH = 9 and 11, reaching 64% and 50%, respectively after 120 min and a flow rate of 3 L/min. Copyright © 2022 by Authors, Published by BCREC Group. This is an open access article under the CC BY-SA License (https://creativecommons.org/licenses/by-sa/4.0). 
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