Dataset: CDOM and FDOM full-depth Nisken profiles from high-resolution surveys of DOM optical properties conducted during the R/V Melville cruise MV1310 in the Gulf of Alaska (August 4–21, 2013)

Preliminary and in progressVersion 0 (2020-08-14)Dataset Type:Unknown

Principal Investigator: William Miller (University of Georgia)

Co-Principal Investigator: Patricia M. Medeiros (University of Georgia)

BCO-DMO Data Manager: Amber D. York (Woods Hole Oceanographic Institution)


Program: United States Surface Ocean Lower Atmosphere Study (U.S. SOLAS)

Project: Quantifying the Photochemical Reactivity of Deep Ocean Water (DORC PhotoChem)

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CDOM and FDOM full-depth Nisken profiles from high-resolution surveys of DOM optical properties conducted during the R/V Melville cruise MV1310 in the Gulf of Alaska (August 4–21, 2013).  CDOM and FDOM (w/5 EEMS/PARAFAC components).

This dataset page provides data access for optical data in a data table with select wavelengths and specific calculations.  Text files containing each CDOM spectra for every scan used in the optical data table calculations are available in a zip file in the "Data Files" section on this page. [Note 2020-08-17, access to optical data table is pending]

CDOM = colored dissolved organic matter
FDOM = fluorescent dissolved organic matter
EEMS = excitation-emission matrix spectrum 
PARAFAC = parallel factor analysis


Related Datasets

IsSupplementedBy

Dataset: CTD - Profiles
Relationship Description: Corresponding hydrographic (depth, T, S) and chemical (nitrate, nitrite, ammonia, silicate, phosphate, oxygen) data for each cast.
Hansell, D. (2014) CTD profile data from R/V Melville cruise MV1310 in the North Pacific Gulf of Alaska; 48N to 59N and 129W to 153W in 2013 (North Pacific RDOC project). Biological and Chemical Oceanography Data Management Office (BCO-DMO). (Version 1) Version Date 2014-09-02 http://lod.bco-dmo.org/id/dataset/527102

Related Publications

Results

Cao, F., Zhu, Y., Kieber, D. J., & Miller, W. L. (2020). Distribution and photo-reactivity of chromophoric and fluorescent dissolved organic matter in the Northeastern North Pacific Ocean. Deep Sea Research Part I: Oceanographic Research Papers, 155, 103168. doi:10.1016/j.dsr.2019.103168
Methods

Bahram, M., Bro, R., Stedmon, C., & Afkhami, A. (2006). Handling of Rayleigh and Raman scatter for PARAFAC modeling of fluorescence data using interpolation. Journal of Chemometrics, 20(3-4), 99–105. doi:10.1002/cem.978
Methods

Gentry-Shields, J., Wang, A., Cory, R. M., & Stewart, J. R. (2013). Determination of specific types and relative levels of QPCR inhibitors in environmental water samples using excitation–emission matrix spectroscopy and PARAFAC. Water Research, 47(10), 3467–3476. doi:10.1016/j.watres.2013.03.049
Methods

Helms, J. R., Stubbins, A., Ritchie, J. D., Minor, E. C., Kieber, D. J., & Mopper, K. (2008). Absorption spectral slopes and slope ratios as indicators of molecular weight, source, and photobleaching of chromophoric dissolved organic matter. Limnology and Oceanography, 53(3), 955–969. doi:10.4319/lo.2008.53.3.0955
Methods

Lakowicz, J. R. (2013). Principles of Fluorescence Spectroscopy. New York, NY: Springer.