Articles | Volume 17, issue 2
https://doi.org/10.5194/bg-17-305-2020
https://doi.org/10.5194/bg-17-305-2020
Research article
 | 
20 Jan 2020
Research article |  | 20 Jan 2020

Oxygen dynamics and evaluation of the single-station diel oxygen model across contrasting geologies

Simon J. Parker

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Cited articles

Alnoee, A. B., Riis, T., Andersen, M. R., Baattrup-Pedersen, A., and Sand-Jensen, K.: Whole-stream metabolism in nutrient-poor calcareous streams on Oland, Sweden, Aquat. Sci., 77, 207–219, 2015. 
American Public Health Association (APHA): Standard Methods for the Examination of Water and Waste Water, 20th Edn., American Public Health Association, Washington, DC, 1796 pp., 1998. 
Appling, A. P., Hall, R. O., Yackulic, C. B., and Arroita, M.: Overcoming equifinality: Leveraging long time series for stream metabolism estimation, J Geophys. Res.-Biogeo., 123, 624–645, 2018. 
Beaulieu, J. J., Arango, C. P., Balz, D. A., and Shuster, W. D.: Continuous monitoring reveals multiple controls on ecosystem metabolism in a suburban stream, Freshwater Biol., 58, 918–937, 2013. 
Benjamin, J. R., Bellmore, J. R., and Watson, G. A.: Response of ecosystem metabolism to low densities of spawning Chinook Salmon, Freshw. Sci., 35, 810–825, 2016. 
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Short summary
Dissolved oxygen (DO) models typically assume constant ecosystem respiration over the course of a single day. Using a data-driven approach, this research examines this assumption in four streams across two (hydro-)geological types (Chalk and Greensand). Despite hydrogeological equivalence in terms of baseflow index for each hydrogeological pairing, model suitability differed within, rather than across, geology types. This corresponded with associated differences in timings of DO minima.
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