AcceleratedPollutantDegradation by UV/H<sub>2</sub>O<sub>2</sub> at the Air–WaterInterface of Microdroplets
Xiaochen Liu (356802), Yishuai Pan (15901631), Yu Yao (428722), Shuxuan Chen (20837993), Baoliang Chen (1557823), Chiheng Chu (1497064)
内容与影响
Ultraviolet light-induced homolysis of hydrogen peroxide (UV/H<sub>2</sub>O<sub>2</sub>) can generate powerful hydroxyl radicals (<sup>•</sup>OH) for sustainable water purification. However, the efficiency of the conventional bulk-phase UV/H<sub>2</sub>O<sub>2</sub> system is limited by the low yield and utilization of <sup>•</sup>OH, in turn necessitating high UV energy input and long purification period. In this study, we present an innovative UV/H<sub>2</sub>O<sub>2</sub> microdroplet system for enhanced pollutant degradation. The degradation of pollutants in sprayed microdroplets was accelerated by 8.5–63.3-fold compared to those in bulk water, demonstrating universal effectiveness across a range of pollutant types and diverse aqueous matrices. This enhancement stems from elevated <sup>•</sup>OH production at the air–water interface due to the enhanced UV absorbance of H<sub>2</sub>O<sub>2</sub>. The production of <sup>•</sup>OH in the microdroplet system was 45-fold higher than that in bulk water, facilitating rapid <sup>•</sup>OH-mediated pollutant degradation. Moreover, pollutants accumulate at the air–water interface, where <sup>•</sup>OH is concentrated, leading to higher utilization of <sup>•</sup>OH for mediating pollutant degradation before quenching. Our findings provide a solution to overcome the bottlenecks in <sup>•</sup>OH production and utilization, offering insights for improving the efficiency of UV/H<sub>2</sub>O<sub>2</sub> water treatment systems.
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