Javascript must be enabled to continue!
Mechanisms Controlling Interannual Variability of Seasonal Hypoxia Off the Changjiang River Estuary
View through CrossRef
AbstractHypoxia has long been a symptom of deteriorating ecosystem that threatens the health of estuarine and coastal waters. Episodic hypoxia events and intraseasonal variation of coastal hypoxia have been amply investigated. However, interannual variability of coastal hypoxia has only been assessed in few regions. Bottom hypoxia forms seasonally off the Changjiang River Estuary in the East China Sea mainly due to the large riverine inputs. Large river discharge and its interactions with ambient water combine to contribute to the development of episodic hypoxia events and the intraseasonal migration of bottom hypoxia. However, little is known about the interannual variation of bottom hypoxia in this region. This study used a well‐evaluated, coupled physical–biogeochemical model to explore the long‐term feature of hypoxia in the East China Sea. The bottom water in the hypoxic zone lost oxygen with a rate of −1.2 mmol/m3/year. Bottom hypoxia showed large interannual variations of geographical location, severity, volume expansion, and sustainment. Large Changjiang River discharge was a prerequisite for hypoxia formation and the associated interannual variation. The interannual variations in the direction and strength of shelf wind controlled long‐term distribution of Changjiang diluted water. The delivery of freshwater fundamentally determined the strength of vertical stratification and the rates of biogeochemical cycles, contributing 73% of the interannual variation of bottom hypoxia.
American Geophysical Union (AGU)
Title: Mechanisms Controlling Interannual Variability of Seasonal Hypoxia Off the Changjiang River Estuary
Description:
AbstractHypoxia has long been a symptom of deteriorating ecosystem that threatens the health of estuarine and coastal waters.
Episodic hypoxia events and intraseasonal variation of coastal hypoxia have been amply investigated.
However, interannual variability of coastal hypoxia has only been assessed in few regions.
Bottom hypoxia forms seasonally off the Changjiang River Estuary in the East China Sea mainly due to the large riverine inputs.
Large river discharge and its interactions with ambient water combine to contribute to the development of episodic hypoxia events and the intraseasonal migration of bottom hypoxia.
However, little is known about the interannual variation of bottom hypoxia in this region.
This study used a well‐evaluated, coupled physical–biogeochemical model to explore the long‐term feature of hypoxia in the East China Sea.
The bottom water in the hypoxic zone lost oxygen with a rate of −1.
2 mmol/m3/year.
Bottom hypoxia showed large interannual variations of geographical location, severity, volume expansion, and sustainment.
Large Changjiang River discharge was a prerequisite for hypoxia formation and the associated interannual variation.
The interannual variations in the direction and strength of shelf wind controlled long‐term distribution of Changjiang diluted water.
The delivery of freshwater fundamentally determined the strength of vertical stratification and the rates of biogeochemical cycles, contributing 73% of the interannual variation of bottom hypoxia.
Related Results
Nitrous oxide in the Changjiang (Yangtze River) Estuary and its adjacent marine area: Riverine input, sediment release and atmospheric fluxes
Nitrous oxide in the Changjiang (Yangtze River) Estuary and its adjacent marine area: Riverine input, sediment release and atmospheric fluxes
Abstract. Dissolved nitrous oxide (N2O) was measured in the waters of the Changjiang (Yangtze River) Estuary and its adjacent marine area during five surveys covering the period of...
Hypoxia disaster in waters adjacent to the Changjiang estuary
Hypoxia disaster in waters adjacent to the Changjiang estuary
Abstract. Based on observational data from ten cruises carried out in 2012 and 2013, the distribution of dissolved oxygen (DO) and hypoxia (DO < 2.0 mg L−1) evolution in waters ...
Prediction of morphological evolution trends in the South Branch of the Changjiang Estuary based on numerical and physical models
Prediction of morphological evolution trends in the South Branch of the Changjiang Estuary based on numerical and physical models
The Changjiang Estuary presents a geomorphic pattern of "three-level branching and four-outlet entering the sea", which is influenced by various factors such as runoff, tides, stor...
Nitrous oxide in the Changjiang (Yangtze River) Estuary and its adjacent marine area: riverine input, sediment release and atmospheric fluxes
Nitrous oxide in the Changjiang (Yangtze River) Estuary and its adjacent marine area: riverine input, sediment release and atmospheric fluxes
Abstract. Dissolved nitrous oxide (N2O) was measured in the waters of the Changjiang (Yangtze River) Estuary and its adjacent marine area during five surveys covering the period of...
Transient Hypoxia Extent Off Changjiang River Estuary due to Mobile Changjiang River Plume
Transient Hypoxia Extent Off Changjiang River Estuary due to Mobile Changjiang River Plume
AbstractObserved oxygen concentrations collected at discrete locations during research cruises were conventionally used to estimate spatial extents of bottom low‐oxygen/hypoxia. Ye...
GW24-e2990 The expression of rock in cardiomyocte exposed to hypoxia and its role in cardiomyocte injury
GW24-e2990 The expression of rock in cardiomyocte exposed to hypoxia and its role in cardiomyocte injury
Objectives
Using cultured myocardial cells in vitro and establishing virtual hypoxia environment of cardiomyocyte apoptosis model, to observe the expression of Ro...
Flodfund - Bronzealderdeponeringer fra Gudenåen
Flodfund - Bronzealderdeponeringer fra Gudenåen
River findsBronze Age metalwork from the river GudenåBronze Age metalwork (primarily swords and other weapons) found in European rivers has aroused interest for many years, but lit...
Hypoxia signatures in closed-circuit rebreather divers
Hypoxia signatures in closed-circuit rebreather divers
Introduction: Faults or errors during use of closed-circuit rebreathers (CCRs) can cause hypoxia. Military aviators face a similar risk of hypoxia and undergo awareness training to...

