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使用带有锥形转子的旋转水力空化反应器对废水进行臭氧氧化降解。

Ozonation degradation of wastewater using rotational hydrodynamic cavitation reactor with a conical rotor.

作者信息

Liu Huiyang, Yu Jianfeng

机构信息

Jiangsu Key Laboratory of Advanced Food Manufacturing Equipment & Technology, Jiangnan University, Wuxi, People's Republic of China.

School of Mechanical Engineering, Jiangnan University, Wuxi, People's Republic of China.

出版信息

Environ Technol. 2025 Apr;46(10):1545-1560. doi: 10.1080/09593330.2024.2391075. Epub 2024 Aug 19.

DOI:10.1080/09593330.2024.2391075
PMID:39157964
Abstract

Water pollution caused by an abusive discharge of dye-containing wastewater leads to serious ecological risks. Conventional wastewater treatment methods have shortcomings of incomplete degradation, long-time treatment and secondary pollution. For the first time, a rotational hydrodynamic cavitation reactor (RHCR) equipped with a conical rotor has been designed to enhance the ozonation process for effective degradation of pollutants. The effects of rotational speed, discharge voltage, gas flow rate, liquid flow rate and initial pH on methylene blue (MB) degradation were deeply investigated. The optimised conditions were initial pH = 9, rotational speed = 1800 rpm, discharge voltage = 9.3 kV, gas flow rate = 60 mL/min and liquid flow rate = 80 mL/min. With the integration of ozonation and cavitation in RHCR, the MB degradation efficiency reached 95.2%, which was 15.6% higher than that of the individual ozonation method. The degradation process was proven to track the first-order kinetic model, with the reaction rate and synergy index were 0.232 min and 1.78, respectively. Through the quenching experiments, it can be confirmed that the contribution proportion of hydroxyl radical during degradation was increased by 8.7% due to the enhancement of cavitation. A required energy consumption of 74.7 kWh/order/m and a total expense of 8.7 $/m were calculated. The energy consumption of the RHCR was approximately 80% lower than that of the recently reported degradation system combining ozonation and cavitation, with total expense reduced by 52%. The findings of this work provide a new water treatment method and offered theoretical references for the design of RHCR.

摘要

含染料废水的不当排放所导致的水污染会引发严重的生态风险。传统的废水处理方法存在降解不完全、处理时间长以及二次污染等缺点。首次设计了一种配备锥形转子的旋转式水力空化反应器(RHCR),以强化臭氧化过程,实现污染物的有效降解。深入研究了转速、放电电压、气体流速、液体流速和初始pH值对亚甲基蓝(MB)降解的影响。优化条件为初始pH值 = 9、转速 = 1800 rpm、放电电压 = 9.3 kV、气体流速 = 60 mL/min以及液体流速 = 80 mL/min。通过在RHCR中整合臭氧化和空化作用,MB降解效率达到95.2%,比单独的臭氧化方法高出15.6%。降解过程被证明符合一级动力学模型,反应速率和协同指数分别为0.232 min和1.78。通过猝灭实验可以证实,由于空化作用的增强,降解过程中羟基自由基的贡献比例提高了8.7%。计算得出所需能耗为74.7 kWh/order/m,总费用为8.7美元/m。RHCR的能耗比最近报道的结合臭氧化和空化的降解系统低约80%,总费用降低了52%。这项工作的研究结果提供了一种新的水处理方法,并为RHCR的设计提供了理论参考。

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