The role of TiO2 NPs catalyst and packing material in removal of phenol from wastewater using an ozonized bubble column reactor

Q3 Environmental Science
Saja A. Alattar, K. Sukkar, M. Alsaffar
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引用次数: 2

Abstract

Phenol is present as a highly toxic pollutant in wastewater, and it has a dangerous impact on the environment. In the present research, the phenol removal from wastewater has been achieved using four treatment methods in a bubble column reactor (treatment by ozone only, using packed bubble column reactor with ozone, utilizing ozone with TiO2 NPs catalyst in the reactor without packing, and employing ozone with TiO2 NPs in the presence of packing). The effects of phenol concentration, ozone dosage, TiO2 NPs additions, and contact time on the phenol removal efficiency were determined. It was found that at a contact time of 30 min, the phenol removal was 60.4, 74.9, 86.0, and 100% for the first, second, third, and fourth methods, respectively. The results indicated that the phenol degradation method using catalytic ozonation in a packed bubble column with TiO2 NPs is the best treatment method. This study demonstrated the advantages of using packing materials in a bubble column reactor to enhance the mass transfer process in an ozonation reaction and then increase the phenol removal efficiency. Also, the presence of TiO2 NPs as a catalyst improves the ozonation process via the production of hydroxyl routs. Additionally, the reaction kinetics of ozonation reaction manifested that the first order model is more applicable for the reaction. Eventually, the packed bubble column reactor in the presence of TiO2 NPs catalyst provided a highperformance removal of phenol with a high economic feasibility.
二氧化钛NPs催化剂和填料在臭氧泡塔反应器中去除废水中苯酚的作用
苯酚作为一种剧毒污染物存在于废水中,对环境有危险的影响。在本研究中,在气泡塔反应器中采用四种处理方法(仅臭氧处理、带臭氧填充的气泡塔反应器、在反应器中使用臭氧和TiO2 NPs催化剂而不进行填料处理、在有填料的情况下使用臭氧和TiO2 NPs)实现了废水中苯酚的去除。考察了苯酚浓度、臭氧用量、TiO2 NPs添加量和接触时间对苯酚去除率的影响。结果表明,在接触时间为30 min时,第一、第二、第三和第四种方法的苯酚去除率分别为60.4、74.9、86.0和100%。结果表明,TiO2纳米粒子填充气泡柱催化臭氧氧化法是苯酚降解的最佳处理方法。本研究证明了在气泡塔反应器中使用填料可以增强臭氧化反应的传质过程,从而提高苯酚的去除效率。此外,TiO2 NPs作为催化剂的存在通过生成羟基路由改善臭氧化过程。此外,臭氧化反应的反应动力学表明,一级模型更适用于该反应。最终,在TiO2 NPs催化剂的作用下,填充气泡塔反应器实现了苯酚的高效脱除,且具有较高的经济可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Acta Innovations
Acta Innovations Environmental Science-Environmental Engineering
CiteScore
3.90
自引率
0.00%
发文量
15
审稿时长
16 weeks
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