Mercury distribution analyses and estimation of recoverable mercury amount from byproducts in primary metal production facilities using UNEP toolkit and on-site measurement

Author:

Back Seung-Ki,Mojammal A. H. M.,Kim Jeong-Hun,Kim Young-Hee,Seok Kwang-Seol,Seo Yong-ChilORCID

Publisher

Springer Science and Business Media LLC

Subject

Mechanics of Materials,Waste Management and Disposal

Reference29 articles.

1. UNEP (2013) Minamata Convention on Mercury text and annexes, GE.14–00280, UNEP/Chemicals/2014/1

2. Minamata Convention on Mercury (2018) http://www.mercuryconvention.org/DNNAdmin/AllENGLISHNewsEntry/tabid/3444/articleType/ArticleView/articleId/160102/language/en-US/The-Minamata-Convention-has-entered-into-force.aspx . Accessed 20 June 2018

3. Balogh SJ, Nollet YH (2008) Mercury mass balance at a wastewater treatment plant employing sludge incineration with offgas mercury control. Sci Total Environ 389:125–131

4. Mlakar TL, Horvat M, Vuk T, Stergaršek A. Kotnik J, Tratnik J, Fajon V (2010) Mercury species, mass flows and processes in a cement plant. Fuel 89:1936–1945

5. UNEP (2013) Global mercury assessment 2013: sources, emissions, releases, and environmental transport, DTI/1636/GE

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1. Investigation on mercury flow and emission in integrated primary iron production process;Journal of Material Cycles and Waste Management;2022-09-24

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