Following is a list of references to standard operating procedures, best practices, manuals and user guides (in alphabetical order) which include information on how to handle dissolved oxygen measurements in marine waters. Please contact the IOCCP Office if you have suggestions for documents that you think are missing from this site.
Palevsky, H.I., Clayton, S., et al (2023) OOI Biogeochemical Sensor Data: Best Practices & User Guide, Version 1.1.1. Ocean Observatories Initiative Biogeochemical Sensor Data Working Group, 134pp. DOI: https://doi.org/10.25607/OBP-1865.2
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Bittig H, Körtzinger A, Neill C, van Ooijen E, Plant JN, Hahn J, Johnson KS, Yang B and Emerson SR, 2018. Oxygen Optode Sensors: Principle, Characterization, Calibration, and Application in the Ocean. Frontiers in Marine Science 4:429. http://doi.org/10.3389/fmars.2017.00429
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Bittig H, Körtzinger A, Johnson K, Claustre H, Emerson S, Fennel K, Garcia H, Gilbert D, Gruber N, Kang D-J, Naqvi W, Prakash S, Riser S, Thierry V, Tilbrook B, Uchida H, Ulloa O, Xing X (2018). SCOR WG 142: Quality Control Procedures for Oxygen and Other Biogeochemical Sensors on Floats and Gliders. Recommendations on the conversion between oxygen quantities for Bio-Argo floats and other autonomous sensor platforms. http://doi.org/10.13155/45915 and at https://github.com/HCBScienceProducts/SCOR_WG142_O2_conversions
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Bittig H, Körtzinger A, Johnson K, Claustre H, Emerson S, et al. 2015. SCOR WG 142: Quality control procedures for oxygen and other biogeochemical sensors on floats and gliders. Recommendation for oxygen measurements from Argo floats, implementation of in-air-measurement routine to assure highest long-term accuracy. http://doi.org/10.13155/45917
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Bushinsky, S.M., and Emerson, S., 2015. Marine biological production from in situ oxygen measurements on a profiling float in the subarctic Pacific Ocean, Global Biogeochemical Cycles, https://doi.org/10.1002/2015GB005251
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Bushinsky, S. M. and Emerson, S., 2013, A method for in-situ calibration of Aanderaa oxygen sensors on surface moorings, Marine Chemistry, https://doi.org/10.1016/j.marchem.2013.05.001
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Bushinsky, S. M. , Emerson, S., Riser, S.C., and Swift D.D., 2016, Accurate oxygen measurements on modified Argo floats using in situ air calibrations, Limnology and Oceanography Methods, https://doi.org/10.1002/lom3.10107
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EU FP7 The Fixed point Open Ocean Observatory network (FixO3) Handbook of Best Practices, June 2016
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Gruber N, Doney SC, Emerson SR, Gilbert D, Kobayashi T, et al. 2010. Adding oxygen to ARGO: developing a global in situ observatory for ocean deoxygenation and biogeochemistry. In Proceedings of OceanObs'09: Sustained Ocean Observations and Information for Society, Venice, Italy, 21–25 September 2009,Vol.2: Community White Papers, ed. J Hall, DE Harrison, D Stammer, chap. 39. ESA Publ. WPP-306. Paris: Eur.Space Agency, http://www.oceanobs09.net/proceedings/cwp/cwp39/
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Johnson, K.S., Berelson, W.M., Boss E.S., Chase Z., Claustre H., Emerson, S.R., Gruber, N., Kortzinger A., Perry, M.J., and Riser S.C., 2009. Observing biogeochemical cycles at global scales with profiling floats and gliders: Prospects for a global array, Oceanography, Vol. 22, No. 3, Special Issue on The Revolution in Global Ocean Forecasting—GODAE: 10 Years of Achievement (SEPTEMBER 2009), pp. 216-225.
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Johnson, K.S., Plant J.N., Riser S.C., and Gilbert D., 2015. Air oxygen calibration of oxygen optodes on a profiling float array, Journal of Atmospheric and Oceanic Technology, 32, 2160-2172. https://doi.org/10.1175/JTECH-D-15-0101.1
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Langdon, C., 2010. Determination of Dissolved Oxygen in Seawater by Winkler Titration Using the Amperometric Technique, In: The GO-SHIP Repeat Hydrography Manual: A Collection of Expert Reports and guidelines. IOCCP Report No 14, ICPO Publication Series No. 134, version 1, 2010 (UNESCO/IOC).
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Larsen M., Lehner P., Borisov S.M., Klimant I., Fischer J.P., Stewart F.J., Canfield D.E., Glud R.N., 2016. In situ quantification of ultra-low O2 concentrations in oxygen minimum zones: Application of novel optodes, Limnology and Oceanography Methods, 14, 784-800. https://doi.org/10.1002/lom3.10126
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Moßhammer, M., Strobl, M., Kühl, M., Klimant, I., Borisov, S. M., Klaus, K., 2016. Design and Application of an Optical Sensor for Simultaneous Imaging of pH and Dissolved O2 with Low Cross-Talk. ACS Sens., 1 (6), 681–687 https://doi.org/10.1021/acssensors.6b00071
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Revsbech N., Larsen L.H., Gundersen J., Dalsgaard T., Ulloa O., Thamdrup B., 2009. Determination of ultra-low oxygen concentrations in oxygen minimum zones by the STOX sensor, Limnology and Oceanography Methods, 7, 371-381. https://doi.org/10.4319/lom.2009.7.371
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Takeshita, Y., Martz, T.R., Johnson, K.S., Plant, J.N., Gilbert, D., Riser, S.C., Neill, C., and Tilbrook, B., 2013. A climatology‐based quality control procedure for profiling float oxygen data, Journal of Geophysical Research, https://doi.org/10.1002/jgrc.20399
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Tengberg, A. et al., 2006. Evaluation of a lifetime-based optode to measure oxygen in aquatic systems, Limnology and Oceanography Methods, 4, 7-17. https://doi.org/10.4319/lom.2006.4.7
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Thierry V., D. Gilbert, T. Kobayashi, K. Sato, C. Schmid, H. Bittig, 2016, Argo data management, Processing Argo OXYGEN data at the DAC level, https://doi.org/10.13155/39795
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Lorenzoni, L., M. Telszewski, H. Benway, A. P. Palacz (Eds.), 2017. A user's guide for selected autonomous biogeochemical sensors. An outcome from the 1st IOCCP International Sensors Summer Course.IOCCP Report No. 2/2017, 83 pp. |