氯
白天
化学
氯化物
氯化铵
大气(单位)
无机化学
铵
光化学
环境化学
反应性(心理学)
光解
炭黑
碳纤维
卤素
大气化学
离子
甲烷
作者
Shuying Li,Yonghong Wang,Yuan Liu,Qing Cao,Gaojie Chen,Xiaolong Fan,Qinyi Li,Peng Zhang,Renzhi Hu,Yee Jun Tham,Xu-Cheng He,Biwu Chu,Qingxin Ma,Jinsheng Chen,Hong He
标识
DOI:10.1038/s41467-026-70941-y
摘要
Chlorine atoms (·Cl) exhibit high reactivity and exert a substantial influence on the atmospheric oxidation capacity and chlorine cycle in the troposphere. The photolysis of molecular chlorine (Cl2) is a crucial source of ·Cl. However, the daytime peaks of Cl2 concentration cannot be entirely accounted for by the currently known pathways. Here we show that the photolytic oxidation of ammonium chloride (NH4Cl), a ubiquitous component of atmospheric aerosol, serves as an important daytime source of Cl2. Laboratory experiments demonstrate that oxygen, water vapour, and acidity are indispensable for Cl2 generation and release, and that Cl2 production is enhanced in the presence of black carbon aerosol. Field observation combined with model simulation demonstrates that the mechanism explains 12-55% of daytime Cl2 concentration. These results reveal a photoactivation pathway for chlorine production that depends only on chlorine salts and solar radiation, with significant implications in regions with abundant chloride salts. Sunlight triggers ammonium chloride in aerosols to produce Cl2 gas, explaining 12-55% of daytime levels. This chlorine source, boosted by black carbon, impacts atmospheric oxidation.
科研通智能强力驱动
Strongly Powered by AbleSci AI