Title of article
Characteristics and flux of settling particulate matter in neritic waters: The southern Yellow Sea and the East China Sea
Author/Authors
Guo، نويسنده , , Xuewu and Zhang، نويسنده , , Yansong and Zhang، نويسنده , , Feijun and Cao، نويسنده , , Qiyuan، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2010
Pages
6
From page
1058
To page
1063
Abstract
The typology and flux of settling particulate matter (SPM) were investigated based on sediment trap sampling at six typical stations in the Yellow Sea and the East China Sea. The settling particulate matter in the neritic seas was sorted into three categories, lithogenic particles, living organisms, and particle aggregates. The mass of individual organisms is an important portion of particulate matter in the neritic waters. The aggregates contain six types, mucus aggregates, fecal pellets, diatom aggregates, silicoflagellate aggregates, tintinnids, and miscellaneous aggregates, of which the silicoflagellate aggregates and tintinnids are the most abundant in the Yellow Sea and the East China Sea. High particle fluxes, such as 215 to 874 g m−2·day−1 SPM in the bottom layer, were found at three stations where the water was well mixed, and the maximum flux was detected in the boundary area between the Yellow Sea and the East China Sea, where a wide nepheloid layer was present. Hence, particle flux in neritic waters can be easily shifted by water turbulence. The net vertical flux (123 to 961 mg C m−2·day−1), the contribution of lateral advection to resuspension flux (5 to 76%), and the particulate organic carbon export ratio (18 to 60%) were estimated for the other three stations where the water was stratified. The highest values were all found in the upwelling area off the Zhejiang coast, suggesting that the area of high productivity provides a high net vertical flux of SPM.
Keywords
East China Sea , Settling particulate matter , Particle flux , Resuspension , lateral advection , Yellow Sea
Journal title
Deep-sea research part II: Topical Studies in oceanography
Serial Year
2010
Journal title
Deep-sea research part II: Topical Studies in oceanography
Record number
2315320
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