JOURNAL OF CHEMICAL ENGINEERING OF JAPAN
Online ISSN : 1881-1299
Print ISSN : 0021-9592
Special Issue for the 5th Asian Conference on Innovative Energy & Environmental Chemical Engineering (ASCON-IEEChE) 2016
Estimation and Future Prediction of Mercury Emissions from Anthropogenic Sources in South Korea
Jin-Ho SungJoo-Sung OhA H M MojammalSeung-Ki BackEun-Song LeeSeong-Heon KimYong-Chil Seo
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2018 Volume 51 Issue 9 Pages 800-808

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Abstract

This study discusses the status of mercury (Hg) emissions and distribution from major anthropogenic sources and the future trend of Hg emissions by activity changes and application of Best Available Technologies (BATs) in South Korea. Atmospheric Hg emission from major anthropogenic sources, based on Annex D of the Minamata Convention, was estimated at approximately 4.48 t in 2014. Emission ratios of Hg by cement clinker production, coal-fired power plants, waste incineration, and non-ferrous metal smelting were 59.8%, 26.6%, 13.8%, and 0.22%, respectively. For this reason, the high Hg emission regions are characterized by the presence of cement clinker production facilities and coal-fired power plants. The future activities of such emission sources were predicted using linear regression with moving averages of the previous activities. The predicted results reveal that the Hg emissions from major sources will increase to 6.06 t in 2022. In addition, the amount of Hg emitted into the atmosphere could be reduced by applying BATs resulting in a decrease to 2.66 t in 2022. In this scenario, the Hg emissions from coal-fired power plants and cement clinkers facilities are expected to decrease significantly.

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© 2018 The Society of Chemical Engineers, Japan
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