Mercury(编程语言)
煤
环境科学
微粒
大气(单位)
污染物
同位素
环境化学
大气科学
地质学
气象学
化学
地理
量子力学
物理
有机化学
程序设计语言
计算机科学
作者
Ruoyu Sun,Fei Cao,Shifeng Dai,Bing Shan,Cuicui Qi,Zhanjie Xu,Pengfei Li,Yi Liu,Wang Zheng,Jiubin Chen
标识
DOI:10.1021/acs.est.2c08637
摘要
Pollutant emissions from coal fires have caused serious concerns in major coal-producing countries. Great efforts have been devoted to suppressing them in China, notably at the notorious Wuda Coalfield in Inner Mongolia. Recent surveys revealed that while fires in this coalfield have been nearly extinguished near the surface, they persist underground. However, the impacts of Hg volatilized from underground coal fires remain unclear. Here, we measured concentrations and isotope compositions of atmospheric Hg in both gaseous and particulate phases at an urban site near the Wuda Coalfield. The atmospheric Hg displayed strong seasonality in terms of both Hg concentrations (5-7-fold higher in fall than in winter) and isotope compositions. Combining characteristic isotope compositions of potential Hg sources and air mass trajectories, we conclude that underground coal fires were still emitting large amounts of Hg into the atmosphere that have been transported to the adjacent urban area in the prevailing downwind direction. The other local anthropogenic Hg emissions were only evident in the urban atmosphere when the arriving air masses did not pass directly through the coalfield. Our study demonstrates that atmospheric Hg isotope measurement is a useful tool for detecting concealed underground coal fires.
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