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A new robust oxygen-temperature sensor for aquatic eddy covariance measurements
Berg, P., Koopmans, D. J., Huettel, M., Li, H., Mori, K., & Wüest, A. (2016). A new robust oxygen-temperature sensor for aquatic eddy covariance measurements. Limnology and Oceanography: Methods, 14(3), 151-167. https://doi.org/10.1002/lom3.10071
A comparison of methods for the measurement of CO<SUB>2</SUB> and CH<SUB>4</SUB> emissions from surface water reservoirs: results from an international workshop held at Three Gorges Dam, June 2012
Zhao, Y., Sherman, B., Ford, P., Demarty, M., DelSontro, T., Harby, A., … Wu, B. (2015). A comparison of methods for the measurement of CO2 and CH4 emissions from surface water reservoirs: results from an international workshop held at Three Gorges Dam, June 2012. Limnology and Oceanography: Methods, 13(1), 15-29. https://doi.org/10.1002/lom3.10003
Comparison of linear and cubic spline methods of interpolating lake water column profiles
North, R. P., & Livingstone, D. M. (2013). Comparison of linear and cubic spline methods of interpolating lake water column profiles. Limnology and Oceanography: Methods, 11(4), 213-224. https://doi.org/10.4319/lom.2013.11.213
An automated method to monitor lake ice phenology
Pierson, D. C., Weyhenmeyer, G. A., Arvola, L., Benson, B., Blenckner, T., Kratz, T., … Weathers, K. (2011). An automated method to monitor lake ice phenology. Limnology and Oceanography: Methods, 9, 74-83. https://doi.org/10.4319/lom.2010.9.0074
An improved method for the analysis of dissolved noble gases in the porewater of unconsolidated sediments
Tomonaga, Y., Brennwald, M. S., & Kipfer, R. (2011). An improved method for the analysis of dissolved noble gases in the porewater of unconsolidated sediments. Limnology and Oceanography: Methods, 9(2), 42-49. https://doi.org/10.4319/lom.2011.9.42
Evaluating oxygen fluxes using microprofiles from both sides of the sediment-water interface
Bryant, L. D., McGinnis, D. F., Lorrai, C., Brand, A., Little, J. C., & Wüest, A. (2010). Evaluating oxygen fluxes using microprofiles from both sides of the sediment-water interface. Limnology and Oceanography: Methods, 8(11), 610-627. https://doi.org/10.4319/lom.2010.8.0610
Quantifying gas ebullition with echosounder: the role of methane transport by bubbles in a medium-sized lake
Ostrovsky, I., McGinnis, D. F., Lapidus, L., & Eckert, W. (2008). Quantifying gas ebullition with echosounder: the role of methane transport by bubbles in a medium-sized lake. Limnology and Oceanography: Methods, 6(2), 105-118. https://doi.org/10.4319/lom.2008.6.105
Microsensor for in situ flow measurements in benthic boundary layers at submillimeter resolution with extremely slow flow
Brand, A., Müller, B., Wüest, A., Dinkel, C., Revsbech, N. P., Nielsen, L. P., … Wehrli, B. (2007). Microsensor for in situ flow measurements in benthic boundary layers at submillimeter resolution with extremely slow flow. Limnology and Oceanography: Methods, 5(6), 185-191. https://doi.org/10.4319/lom.2007.5.185
Theoretical and empirical conversion factors for determining bacterial production in freshwater sediments via leucine incorporation
Buesing, N., & Marxsen, J. (2005). Theoretical and empirical conversion factors for determining bacterial production in freshwater sediments via leucine incorporation. Limnology and Oceanography: Methods, 3(2), 101-107. https://doi.org/10.4319/lom.2005.3.101
Analysis of dissolved noble gases in the porewater of lacustrine sediments
Brennwald, M. S., Hofer, M., Peeters, F., Aeschbach-Hertig, W., Strassmann, K., Kipfer, R., & Imboden, D. M. (2003). Analysis of dissolved noble gases in the porewater of lacustrine sediments. Limnology and Oceanography: Methods, 1, 51-62. https://doi.org/10.4319/lom.2003.1.51