Reducing the effects of fouling on chlorophyll estimates derived from long-term deployments of optical instruments

Two methods to alleviate the problem of fouling of moored flow tube optical instruments are presented. A chemical method diffuses a concentrated solution of bromine into the flow tube between sampling periods, creating a toxic environment for microorganisms. An optical method removes a baseline valu...

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Veröffentlicht in:Journal of Geophysical Research, Washington, DC Washington, DC, 1997-03, Vol.102 (C3), p.5851-5855
Hauptverfasser: Davis, R. F., Moore, C. C., Zaneveld, J. R. V., Napp, J. M.
Format: Artikel
Sprache:eng
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Zusammenfassung:Two methods to alleviate the problem of fouling of moored flow tube optical instruments are presented. A chemical method diffuses a concentrated solution of bromine into the flow tube between sampling periods, creating a toxic environment for microorganisms. An optical method removes a baseline value from the red peak of chlorophyll a. Three spectral absorption meters equipped with the chemical system were deployed in the southeastern Bering Sea from March to September 1993. For a 40‐m instrument the system prevented biofouling for the entire deployment, while an 11‐m instrument was free of contamination for approximately 3.5 months. Reasonable estimates of in situ chlorophyll a were obtained from all three instruments by the subtraction of the baseline.
ISSN:0148-0227
2169-9275
2156-2202
2169-9291
DOI:10.1029/96JC02430