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Coupling between physical processes and biogeochemistry of suspended particles over the inner shelf mud in the East China Sea

作者:James T. Liu, Jay Lee, Rick J. Yang, Xiaoqin Du, Anchun Li, Yu‐Shih Lin, Chih‐Chieh Su, Shuqin Tao · 发表于:Marine Geology · 年份:2021 · DOI:10.1016/j.margeo.2021.106657 · 被引用次数:17 · 研究领域:Coastal wetland ecosystem dynamics、Marine and coastal ecosystems、Coastal and Marine Dynamics

This study examines how geochemical signals regarding the source and transformation in suspended particles are transported in the marine portion of the sediment dispersal system. In the source-to-sink sedimentary continuum of a world major river, the Changjiang (Yangtze) River, is used to demonstrate the close coupling between the marine physical processes and the geochemical signals carried by suspended particles. A sediment trap mooring configured with a non-sequential sediment trap, a downward-looking ADCP, CTD, LISST-100× were deployed for 29 days in the winter of 2014 off the coast of Zhejiang Province, China in water depth of 22.5 m. The mooring rendered two types of data. Physical processes included temporal changes of water depth, currents at 11 depths, temperature at two depths, and salinity at one depth. There was 15-cm accumulation of captured particles in the trap, which rendered the total mass flux of 233.3 g/cm2/day. The trap material was analyzed for grain-size composition, total 210Pb, minerals including mica/illite, kaolinite, chlorite, k-feldspar, plagioclase, quartz, and dolomite. Organic material (TOC, TN) and carbon isotope δ13C were also measured. The range of terrestrial fraction (Ft) of the trap material was between 45–60%. EOF analysis was used to examine the covariability in both data sets. For the physical data set, 37 variables were used in the analysis. For the sediment trap material, 15 variables were used. The EOF results of the physical process...