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Tidal effects on variations in organic and inorganic biogeochemical components in Changjiang (Yangtze River) Estuary and the adjacent East China Sea

河口 生物地球化学循环 海洋学 长江 环境科学 中国 中国海 潮坪 地质学 沉积物 地理 地貌学 环境化学 考古 化学
作者
Shuzhen Song,Lei Gao,Jianzhong Ge,Wenyun Guo,Daoji Li
出处
期刊:Journal of Marine Systems [Elsevier BV]
卷期号:227: 103692-103692 被引量:6
标识
DOI:10.1016/j.jmarsys.2021.103692
摘要

Nutrients and dissolved organic carbon (DOC) including carbohydrates are essential components that drive the carbon cycle in estuarine and coastal ecosystems. The flood-ebb and spring-neap tidal variations in DOC, carbohydrate and nutrient concentrations were investigated in the Changjiang Estuary and the adjacent East China Sea. The DOC, monosaccharide (MCHO), SiO 3 2− , PO 4 3− , NO 3 − , and NO 2 − concentrations fluctuated notably with variations in tidal phases and tidal cycles. The SiO 3 2− , NO 3 − , PO 4 3− , and NO 2 − concentrations were significantly correlated with salinity at flood/ebb tides over a tidal cycle, which indicates that physical mixing might be a major factor affecting tidal variations in nutrient elements. However, there were no significant correlations between DOC, carbohydrate concentrations and salinity. Asymmetrical flood-ebb tidal variations in DOC, carbohydrate and nutrient concentrations were observed, which might result from variations in Changjiang freshwater input due to asymmetrical flood-ebb tidal duration time and velocities in the Changjiang Estuary. There were statistically significant flood-ebb tidal differences in SiO 3 2− , NO 3 − , and NO 2 − concentrations during spring tide in the Changjiang Estuary and neap tide in the East China Sea. DOC and carbohydrate concentrations showed more complex tidal behaviors due to their specific physical and biological characteristics. Principal component analysis indicated that physical mixing driven by tidal forces was an important factor influencing tidal variations in these organic and inorganic components. Other physical and biological processes, such as absorption and microbial degradation, might have also contributed to the tidal variations in these components. Tidal forcing plays a considerable role in controlling temporal variations in organic and inorganic nutrients and should be considered when sampling in estuarine systems and estimate the fluxes of these components. • Asymmetrical flood-ebb tidal variations in nutrients and DOC were observed. • PO 4 3− and NO 2 − showed significant variations between different types of tidal cycles. • DOC showed nonconservative tidal behaviors in the Changjiang Estuary. • Changjiang freshwater input was a main factor affecting tidal variation in nutrients.
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