Atmospheric Mercury Concentrations and Isotopic Compositions Impacted by Typical Anthropogenic Mercury Emissions Sources

IF 10.8 1区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL 环境科学与技术 Pub Date : 2024-09-10 DOI:10.1021/acs.est.4c07649
Chuan Wang, Shaochen Yang, Ruolan Li, Junyao Yan, Yanxin Hu, Chuyan Lai, Zhonggen Li, Ping Li, Leiming Zhang, Xinbin Feng
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Abstract

Coal-fired power plants (CFPPs) and cement plants (CPs) are important anthropogenic mercury (Hg) emission sources. Mercury speciation profiles in flue gas are different among these sources, leading to significant variations in local atmospheric Hg deposition. To quantify the impacts of Hg emissions from CFPPs and CPs on local-scale atmospheric Hg deposition, this study determined concentrations and isotopes of ambient gaseous elemental mercury (GEM), particulate-bound mercury (PBM), and precipitation total Hg (THg) at multiple locations with different distances away from a CFPP and a CP. Higher concentrations of GEM and precipitation THg in the CFPP area in summer were caused by higher Hg emission from the CFPP, resulting from higher electricity demand. Higher concentrations of GEM, PBM, and precipitation THg in the CP area in winter compared to those in summer were related to the higher output of cement. Atmospheric Hg concentration peaked near the CFPP and CP and decreased with distance from the plants. Elevated GEM concentration in the CFPP area was due to flue gas Hg0 emissions, and high PBM and precipitation Hg concentrations in the CP area were attributed to divalent Hg emissions. It was estimated that Hg emissions from the CFPP contributed 58.3 ± 20.9 and 52.3 ± 25.9% to local GEM and PBM, respectively, and those from the CP contributed 47.0 ± 16.7 and 60.0 ± 25.9% to local GEM and PBM, respectively. This study demonstrates that speciated Hg from anthropogenic emissions posed distinct impacts on the local atmospheric Hg cycle, indicating that Hg speciation profiles from these sources should be considered for evaluating the effectiveness of emission reduction policies. This study also highlights the Hg isotope as a useful tool for monitoring environmental Hg emissions.

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受典型人为汞排放源影响的大气汞浓度和同位素组成
燃煤发电厂和水泥厂是重要的人为汞排放源。这些排放源的烟气中汞的种类各不相同,从而导致当地大气汞沉降的显著差异。为了量化 CFPP 和氯化石蜡的汞排放对当地大气汞沉积的影响,本研究测定了距离 CFPP 和氯化石蜡不同距离的多个地点的环境气态元素汞 (GEM)、颗粒结合汞 (PBM) 和降水总汞 (THg) 的浓度和同位素。CFPP 区域夏季的 GEM 和降水总汞浓度较高,是由于电力需求增加导致 CFPP 的汞排放量增加。与夏季相比,冬季 CP 地区的 GEM、PBM 和降水 THg 浓度较高,这与水泥产量较高有关。大气中的汞浓度在 CFPP 和 CP 附近达到峰值,随着与工厂距离的增加而降低。CFPP 地区的 GEM 浓度升高是由于烟气中的 0 型汞排放造成的,而 CP 地区的高 PBM 和降水汞浓度则是由于二价汞排放造成的。据估计,CFPP 排放的汞分别占当地 GEM 和 PBM 的 58.3 ± 20.9% 和 52.3 ± 25.9%,而 CP 排放的汞分别占当地 GEM 和 PBM 的 47.0 ± 16.7% 和 60.0 ± 25.9%。这项研究表明,人为排放的特定汞对当地大气汞循环产生了不同的影响,这表明在评估减排政策的有效性时,应考虑这些排放源的汞标化特征。这项研究还强调了汞同位素是监测环境汞排放的有用工具。
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来源期刊
环境科学与技术
环境科学与技术 环境科学-工程:环境
CiteScore
17.50
自引率
9.60%
发文量
12359
审稿时长
2.8 months
期刊介绍: Environmental Science & Technology (ES&T) is a co-sponsored academic and technical magazine by the Hubei Provincial Environmental Protection Bureau and the Hubei Provincial Academy of Environmental Sciences. Environmental Science & Technology (ES&T) holds the status of Chinese core journals, scientific papers source journals of China, Chinese Science Citation Database source journals, and Chinese Academic Journal Comprehensive Evaluation Database source journals. This publication focuses on the academic field of environmental protection, featuring articles related to environmental protection and technical advancements.
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