Interactions of warming and altered nutrient load timing on the phenology of oxygen dynamics in Chesapeake Bay

Author:

Basenback Nicole1,Testa Jeremy M.2ORCID,Shen Chunqi3

Affiliation:

1. College of Agriculture and Natural Resources University of Maryland College Park Maryland USA

2. Chesapeake Biological Laboratory University of Maryland Center for Environmental Science Solomons Maryland USA

3. College of Environmental Science and Engineering Suzhou University of Science and Technology Suzhou Jiangsu China

Abstract

AbstractThe effects of nutrient loading on estuaries are well studied, given the multitude of negative water quality and ecosystem effects that have been attributed to excess nitrogen and phosphorus. A current gap in this knowledge involves the sensitivity of seasonal cycles of estuarine biogeochemical processes to direct (warming) and indirect influences (nutrient load timing) of climate change. We used a coupled hydrologic–biogeochemical model to investigate changes in the phenology of hypoxia and related biogeochemical processes in Chesapeake Bay under three different hydrologic regimes. Shifts to earlier nutrient load timing during idealized simulations reduced the overall annual hypoxic volume, resulting from discernable, but relatively small reductions in phytoplankton biomass and both sediment and water‐column respiration. Simulated increases in water temperature caused an increase in spring/early summer hypoxic volume associated with elevated respiration rates, but an associated exhaustion of organic matter in the early summer caused a decrease in late summer/fall hypoxic volume due to lowered respiration. Warming effects on hypoxia were larger than nutrient timing effects in scenarios where warming was restricted to spring and when it was applied to all months of the year. These idealized simulations begin the process of understanding the potential impacts of future climatic changes in the seasonal timing of key biogeochemical processes associated with eutrophication.

Funder

National Science Foundation of Sri Lanka

National Oceanic and Atmospheric Administration

Publisher

Wiley

Subject

Earth-Surface Processes,Water Science and Technology,Ecology

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