Worsened physical condition due to climate change contributes to the increasing hypoxia in Chesapeake Bay.
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Summary
It is found the physical condition (vertical exchange+temperature) determines the spatial and seasonal pattern of the hypoxia in Chesapeake Bay, which is likely to experience a worsened physical condition, which will amplify the negative impact of anthropogenic inputs on eutrophication and consequently require more efforts for nutrient reduction to improve the water quality condition.
- Type
- article
- Published
- 2018-07-01
- Cited by
- 95
- References
- 68
- Access
- Open access
- OpenAlex
- https://openalex.org/W2794150249
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:3615783
Keywords
Chesapeake bay, Hypoxia (environmental), Environmental science, Climate change, Oceanography
References
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- OXYGEN-POOR WATERS OF THE CHESAPEAKE BAY.
- Toward a unified theory of tidally-averaged estuarine salinity structure
- Spatial and temporal variabilities of hypoxia in the Rappahannock River, Virginia
- Hypoxia‐induced shifts in nitrogen and phosphorus cycling in Chesapeake Bay
- Role of Late Winter–Spring Wind Influencing Summer Hypoxia in Chesapeake Bay
- Wind Modulation of Dissolved Oxygen in Chesapeake Bay
- Thresholds of hypoxia for marine biodiversity
- Influence of physical forcing on bottom-water dissolved oxygen within Caloosahatchee River Estuary, Florida.
- Deoxygenation of the Baltic Sea during the last century
- Seasonal and regional variations in plankton community production and respiration for Chesapeake Bay
- Effects of global warming on hypoxia in the Baltic Sea–North Sea transition zone
- Chesapeake Bay Anoxia: Origin, Development, and Significance
Cited by
- Role of Baroclinic Processes on Flushing Characteristics in a Highly Stratified Estuarine System, Mobile Bay, Alabama
- Climatically-modulated decline in wind speed may strongly affect eutrophication in shallow lakes.
- Estimating Hypoxic Volume in the Chesapeake Bay Using Two Continuously Sampled Oxygen Profiles
- Modeling Summer Hypoxia Spatial Distribution and Fish Habitat Volume in Artificial Estuarine Waterway
- Monitoring and understanding the water transparency changes of fifty large lakes on the Yangtze Plain based on long-term MODIS observations
- Evaluating expression of autophagy-related genes in oriental river prawn Macrobrachium nipponense as potential biomarkers for hypoxia exposure.
- A data-driven modeling approach for simulating algal blooms in the tidal freshwater of James River in response to riverine nutrient loading
- An assessment of the predictability of column minimum dissolved oxygen concentrations in Chesapeake Bay using a machine learning model
- Evaluation of the total maximum allocated load of dissolved inorganic nitrogen using a watershed-coastal ocean coupled model.
- A Coupled Modeling Approach for Water Management in a River–Reservoir System
- Response of water quality to land use and sewage outfalls in different seasons
- Impacts of Climate Change on the Hydro-Climate of Peninsular Malaysia
- Increasing hypoxia in the Changjiang Estuary during the last three decades deciphered from sedimentary redox-sensitive elements
- High‐Frequency CO 2 System Variability Over the Winter‐to‐Spring Transition in a Coastal Plain Estuary
- Eutrophication control strategies for highly anthropogenic influenced coastal waters.
- Large Projected Decline in Dissolved Oxygen in a Eutrophic Estuary Due to Climate Change
- Understanding the Knowledge and Data Landscape of Climate Change Impacts and Adaptation in the Chesapeake Bay Region: A Systematic Review
- Fifty years of ecological changes: Regime shifts and drivers in a coastal Mediterranean lagoon during oligotrophication.
- Discerning effects of warming, sea level rise and nutrient management on long-term hypoxia trends in Chesapeake Bay.
- The effects of hydrological extremes on denitrification, dissimilatory nitrate reduction to ammonium (DNRA) and mineralization in a coastal lagoon.
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