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Published January 2020 | Version v1
Journal article

Atmospheric mercury accumulation rate in northeastern China during the past 800 years as recorded by the sediments of Tianchi Crater Lake

  • 1. General Institute of Ecological Geology Survey and Research of Heilongjiang Province (China)
  • 2. University of Science and Technology of China. School of Earth and Space Sciences (China)
  • 3. University of Ottawa. Department of Biology (Canada)
  • 4. Chinese Academy of Sciences. Key Laboratory of Vertebrate Evolution and Human Origins of Chinese Academy of Sciences, Institute of Vertebrate Paleontology and Paleoanthropology (China)
  • 5. Harbin Normal University. Key Laboratory of Remote Sensing Monitoring of Geographic Environment for Heilongjiang Province (China)
  • 6. Chinese Academy of Geological Sciences. Institute of Geomechanics (China)

Description

An evaluation of the history of anthropogenic mercury (Hg) emissions is needed to quantify total atmospheric Hg emissions since the Industrial Revolution. Thus more long-term records of Hg accumulation rate from natural archives are needed. In the present study, a sediment core from Tianchi Lake, a crater lake in northeastern China, was used to reconstruct atmospheric Hg accumulation rates during the past 800 years. The results show that both Hg concentration and Hg accumulation rate began to increase from 29.5 to 40.2 ng g−1 and from 1.44 to 2.26 μg m−2 yr−1, respectively, at ~ 1750 AD, synchronous with the initiation of the Industrial Revolution. The Hg accumulation rate and Hg concentration increased significantly at ~ 1850 AD, and subsequently, there were two prominent peaks, at ~ 1940 AD and ~ 1980 AD, which are temporally consistent with the Second World War and the peak in commercial usage of Hg, respectively. The Hg accumulation rate and Hg concentration decreased after ~ 1980 AD, possibly because of the decrease in the global Hg background at that time. Differences in regional Hg emissions and atmospheric circulation may be responsible for the different trends in Hg accumulation rate after ~ 1980 AD in the Tibetan Plateau and northeastern China. Our results provide new data for evaluating natural and anthropogenic Hg emissions to the atmosphere in China.

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Publishing Information

Journal Title
Environmental Science and Pollution Research International
Journal Volume
27
Journal Issue
1
Journal Page Range
p. 571-578
ISSN
0944-1344
CODEN
ESPLEC

INIS

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Copyright (c) 2019 © Springer-Verlag GmbH Germany, part of Springer Nature 2019