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Variation of Hg content in low sulfur coals in relation to the coal-forming environment: a case study from Zhuji Coal Mine,Huainan Coalfield,North China
Authors:Xudong Wang  Dun Wu  Guijian Liu  Ruoyu Sun
Institution:1.School of Earth and Space Sciences, CAS Key Laboratory of Crust-Mantle Materials and Environment,University of Science and Technology of China,Hefei,China;2.Anhui Public Welfare Geological Survey Management Center,The Chinese Academy of Sciences,Xi’an,China;3.State Key Laboratory of Loess and Quaternary Geology, Institute of Earth Environment,The Chinese Academy of Sciences,Xi’an,China;4.Exploration Research Institute,Anhui Provincial Bureau of Coal Geology,Hefei,China;5.Institute of Surface-Earth System Science,Tianjin University,Tianjin,China
Abstract:Twenty-nine low sulfur coal samples were selected to determine the magnitude and variability of mercury (Hg) content in a well-documented stratigraphy system including ten continuous coal seams in Zhuji Coal Mine, Huainan Coalfield, Anhui Province, North China. Mercury content of samples was measured on a direct mercury analyzer and confident results were obtained as evaluated by standard references, sample replicates and procedural blanks. The calculated overall mine average Hg content is 71.19?±?9.28 ng/g based on seam averages and weighting by the estimated reserve of each coal seam. The estimated Hg emission potential for Huainan coalfield is obviously lower than that calculated from coal emission factor in industrial use. An increasing trend of Hg content with the evolution of depositional environment was observed from Nos. 3 to 11-2 coal seams. Combining the evidence of sedimentology and paleontology, a better understanding was gained of the mechanism of Hg sequestration in specific coal benches. A large portion of Hg residing in the low sulfur coals presumably integrated to the functional groups of organic constitution, whereas pyrite was generally abundant in the high sulfur coals.
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