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SCI Article

Extremely high sulfate reduction, sediment oxygen demand and benthic nutrient flux associated with a
Author Kim, Sung-Han (Dept Marine Sci & Convergent Technol); Hyun, Jung-Ho (Dept Marine Sci & Convergent Technol);
Corresponding Author Info Hyun, JH (reprint author), Hanyang Univ, Dept Marine Sci & Convergent Technol, 55 Hanyangdaehak Ro, Ansan 15588, Gyeonggi Do, South Korea.
E-mail 메일hyunjh@hanyang.ac.kr
Document Type Article
Source MARINE POLLUTION BULLETIN Volume:120 Issue:20170102 Pages:126-135 Published:2017
Times Cited 0
External Information pdfhttp://dx.doi.org/10.1016/j.marpolbul.2017.04.047
Abstract We investigated environmental impact of large-scale dyke on the sediment geochemistry, sulfate reduction rates (SRRs), sediment oxygen demand (SOD) and potential contribution of benthic nutrient flux (BNF) to primary production in the Yeongsan River estuary, Yellow Sea. The sediment near the dyke (YE1) with high organic carbon (C-org) content (
Web of Science Categories Environmental Sciences; Marine & Freshwater Biology
Funding Korean Long-term Marine Ecosystem Research (K-LTMER) program titled "Long-Term Change of Structure and Function in Marine Ecosystem of Korea" - Korean Ministry of Ocean and Fisheries; Korean Long-term Marine Ecosystem Research (K-LTMER) program titled "Gy
Language English
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