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Extreme Weather Years Drive Episodic Changes in Lake Chemistry: Implications for Recovery From Sulfate Deposition and Long-Term Trends in Dissolved Organic Carbon

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Interannual climate variability is expected to increase over the next century, but the extent to which hydroclimatic variability influences biogeochemical processes is unclear. To determine the effects of extreme weather on surface water chemistry, a 30-year record of surface water geochemistry for 84 lakes in the northeastern U.S. was combined with landscape data and watershed-specific weather data. With these data, responses in sulfate (SO) and dissolved organic carbon (DOC) concentrations were characterized during an extreme wet year and an extreme dry year across the region. Redundancy analysis was used to model lake chemical response to extreme weather as a function of watershed features. A response was observed in DOC and SO concentration in response to extreme wet and dry years in lakes across the northeastern U.S. Acidification was observed during drought and brownification was observed during wet years. Lake chemical response was related to landscape characteristics in different ways depending on the type of extreme year. A linear relationship between wetland coverage and DOC and SO deviations was observed during extreme wet years. The results presented here help to clarify the variability observed in long-term recovery from acidification and regional increases in DOC. Understanding the chemical response to weather variability is becoming increasingly important as temporal variation in precipitation is likely to intensify with continued atmospheric warming.

Strock, Kristin E., Jasmine E. Saros, Sarah J. Nelson, Sean D. Birkel, Jeffrey S. Kahl, William H. McDowell. Extreme Weather Years Drive Episodic Changes in Lake Chemistry: Implications for Recovery From Sulfate Deposition and Long-Term Trends in Dissolved Organic Carbon. Biogeochemistry 127, no. 2 (2016): 353-365. https://link.springer.com/article/10.1007/s10533-016-0185-9

Kristin Strock is a professor of Environmental Studies at Dickinson College.

For more information on the published version, visit Springer's Website. https://link.springer.com/article/10.1007/s10533-016-0185-9


MLA citation style (9th ed.)

Strock, Kristin E, et al. Extreme Weather Years Drive Episodic Changes In Lake Chemistry: Implications for Recovery From Sulfate Deposition and Long-term Trends In Dissolved Organic Carbon. . 2016. dickinson.hykucommons.org/concern/generic_works/81c6eb31-3797-44cf-bfae-565dea3827d3.

APA citation style (7th ed.)

S. K. E, S. J. E, N. S. J, B. S. D, K. J. S, & M. W. H. (2016). Extreme Weather Years Drive Episodic Changes in Lake Chemistry: Implications for Recovery From Sulfate Deposition and Long-Term Trends in Dissolved Organic Carbon. https://dickinson.hykucommons.org/concern/generic_works/81c6eb31-3797-44cf-bfae-565dea3827d3

Chicago citation style (CMOS 17, author-date)

Strock, Kristin E., Saros, Jasmine E., Nelson, Sarah J., Birkel, Sean D., Kahl, Jeffrey S., and McDowell, William H.. Extreme Weather Years Drive Episodic Changes In Lake Chemistry: Implications for Recovery From Sulfate Deposition and Long-Term Trends In Dissolved Organic Carbon. 2016. https://dickinson.hykucommons.org/concern/generic_works/81c6eb31-3797-44cf-bfae-565dea3827d3.

Note: These citations are programmatically generated and may be incomplete.