化学
海水
激进的
水溶液
Mercury(编程语言)
光化学
环境化学
溴
溴化物
碳酸氢盐
反应性(心理学)
碳酸盐
无机化学
卤化物
化学反应
羟基自由基
小学(天文学)
化学工程
碘化物
臭氧
俘获
人工海水
大气化学
作者
Qingyuan Song,Fengjie Chen,Yong Liang,Bolei Chen,Yongguang Yin,Maoyong Song,Yong Cai,Guibin Jiang
摘要
The air–water interface of aqueous microdroplets enables the spontaneous generation of hydroxyl radicals (·OH). However, the environmental fate and effect of these primary oxidants in complex, ion-rich media such as seawater remains uncharted. Here, we discover that the interface of seawater microdroplets sustains a radical cascade, which markedly amplifies their oxidative power beyond that of pure water microdroplets. Spontaneously produced ·OH at the interface quickly engages in synergistic reactions with abundant bromide and bicarbonate ions, initiating a network of secondary radicals, including reactive bromine (·Br) and carbonate (·CO 3 – ) species. The coexistence and interconversion within this self-sustaining interfacial cycle are demonstrated through radical trapping and spectroscopic methods. To assess the environmental implications of this process, we have quantified its role in the dark oxidation of gaseous elemental mercury. Our findings advance the understanding from mere interfacial oxidant generation to the radical networks by specific ions, offering a novel framework for predicting chemical reactivity in environmental aqueous microdroplets.
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