NOx attenuation in flue gas by •OH/SO4•--based advanced oxidation processes

The combustion of fossil fuels has resulted in rapidly increasing emissions of nitrogen oxide (NO x ), which has caused serious human health and environmental problems. NO capture has become a research focus in gas purification because NO accounts for more than 90% of NO x and is difficult to remove...

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Veröffentlicht in:Environmental science and pollution research international 2020-10, Vol.27 (30), p.37468-37487
Hauptverfasser: Chen, Hongyu, Wang, Cuicui, Zhang, Jiahao, Shi, Yijie, Liu, Yuexian, Qian, Zhi
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Sprache:eng
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Zusammenfassung:The combustion of fossil fuels has resulted in rapidly increasing emissions of nitrogen oxide (NO x ), which has caused serious human health and environmental problems. NO capture has become a research focus in gas purification because NO accounts for more than 90% of NO x and is difficult to remove. Advanced oxidation processes (AOPs), features the little secondary pollution and the broad-spectrum strong oxidation of hydroxyl radicals ( • OH), are effective and promising strategies for NO removal from coal-fired flue gas. This review provides the state of the art of NO removal by AOPs, highlighting several methods for producing • OH and SO 4 •− . According to the main radicals responsible for NO removal, these processes are classified into two categories: hydroxyl radical-based AOPs (HR-AOPs) and sulfate radical-based AOPs (SR-AOPs). This paper also reviews the mechanisms of NO capture by reactive oxygen species (ROS) and SO 4 •− in various AOPs. A HiGee (high-gravity) enhanced AOP process for improving NO removal, characterized by intensified gas-liquid mass transfer and efficient micro-mixing, is then proposed and discussed in brief. We believe that this review will be useful for workers in this field. Graphical abstract
ISSN:0944-1344
1614-7499
DOI:10.1007/s11356-020-09782-1