Comparative study of wastewater treatment efficiency: ozone vs. atmospheric oxygen with a manganese dioxide catalyst

IF 2.4 4区 环境科学与生态学 Q2 WATER RESOURCES Water Quality Research Journal Pub Date : 2024-03-25 DOI:10.2166/wqrj.2024.033
Sholpan Umbetova, Gulzhan Abylkassova, Dmitriy Spitsov
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Abstract

This study aims to validate the wastewater treatment technique and compare the effectiveness of applying an ozone mixture and atmospheric oxygen in the presence of a catalyst (manganese dioxide) with various dosages. A total of 540 replicates were performed, corresponding to different levels of manganese dioxide concentrations during oxygen and ozone delivery (270 repetitions for each of the experiments). The research was carried out using an experimental setup developed by the authors. The maximum efficiency of oxidation processes was observed within 15–30 min after the start of the treatment cycle. The decrease in the level of chemical oxygen demand within the first quarter-hour during ozone treatment was significantly greater compared to atmospheric oxygen treatment (p ≤ 0.05). The method's efficiency increased to 53% for ozone and 41% for oxygen after 30 min of purification (p ≤ 0.05). Lower catalyst consumption was observed when using an ozone mixture. The tested technology can be recommended for wastewater treatment with high hydrocarbon concentrations. The findings of the study indicated the potential application of ozone treatment with a manganese catalyst for treating wastewater with high hydrocarbon content, thereby fostering the development of more effective water purification methods in the industrial sector.
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废水处理效率比较研究:臭氧与含二氧化锰催化剂的大气氧
本研究旨在验证废水处理技术,并比较在催化剂(二氧化锰)存在的情况下使用臭氧混合物和大气氧气的效果。共进行了 540 次重复实验,分别对应氧气和臭氧输送过程中二氧化锰浓度的不同水平(每次实验重复 270 次)。研究使用了作者开发的实验装置。在处理周期开始后的 15-30 分钟内,氧化过程的效率达到最高。在臭氧处理过程中,化学需氧量在第一刻钟内的下降幅度明显大于大气氧处理(p ≤ 0.05)。净化 30 分钟后,臭氧和氧气的净化效率分别提高到 53% 和 41%(p ≤ 0.05)。使用臭氧混合物时,催化剂消耗量较低。在处理碳氢化合物浓度较高的废水时,可推荐使用所测试的技术。研究结果表明,使用锰催化剂的臭氧处理技术有可能用于处理碳氢化合物含量较高的废水,从而促进工业部门开发更有效的水净化方法。
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8.70%
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