An experimental study on the simultaneous removal of NO and SO 2 with a new wet recycling process based on the micro-nano bubble water system

The micronano bubble water system (MNBW) generated by a micronano bubble generator (MNBG) has the superior oxidation properties and can improve gas solubility. In the study, a new wet recycling process based on MNBW is proposed to simultaneously remove nitric oxide (NO) and sulfur dioxide (SO ). The...

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Veröffentlicht in:Environmental science and pollution research international 2020-02, Vol.27 (4), p.4197
Hauptverfasser: Xiao, Zhengguo, Li, Dengxin, Zhang, Rongliang, Wang, Feikun, Pan, Fanfeng, Sun, Zhihong
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Sprache:eng
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Zusammenfassung:The micronano bubble water system (MNBW) generated by a micronano bubble generator (MNBG) has the superior oxidation properties and can improve gas solubility. In the study, a new wet recycling process based on MNBW is proposed to simultaneously remove nitric oxide (NO) and sulfur dioxide (SO ). The important experimental parameters such as initial water pH, initial water temperature, NO and SO concentrations, and the presence of oxygen (O ) were investigated to explore the feasibility of desulfurization and denitration with MNBW. The experimental results showed that decreasing initial water pH or increasing initial water temperature and NO and SO concentrations were not conducive to the removal of NO or SO . O could promote the removal of NO, but it had no effect on SO removal. In addition, SO removal efficiency always remained high and did not change obviously during the experimental period. However, NO removal efficiency gradually decreased in the first 50 min and then became stable.
ISSN:1614-7499