An operational overview of the EXport Processes in the Ocean from RemoTe Sensing (EXPORTS) Northeast Pacific field deployment

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Date
2021-07-07
Authors
Siegel, David A.
Cetinić, Ivona
Graff, Jason R.
Lee, Craig M.
Nelson, Norman B.
Perry, Mary J.
Soto Ramos, Inia
Steinberg, Deborah K.
Buesseler, Ken O.
Hamme, Roberta C.
Fassbender, Andrea
Nicholson, David P.
Omand, Melissa M.
Robert, Marie
Thompson, Andrew F.
Amaral, Vinicius
Behrenfeld, Michael J.
Benitez-Nelson, Claudia R.
Bisson, Kelsey
Boss, Emmanuel S.
Boyd, Philip
Brzezinski, Mark A.
Buck, Kristen N.
Burd, Adrian B.
Burns, Shannon
Caprara, Salvatore
Carlson, Craig A.
Cassar, Nicolas
Close, Hilary G.
D'Asaro, Eric A.
Durkin, Colleen A.
Erickson, Zachary K.
Estapa, Margaret L.
Fields, Erik
Fox, James
Freeman, Scott
Gifford, Scott M.
Gong, Weida
Gray, Deric
Guidi, Lionel
Haëntjens, Nils
Halsey, Kim
Huot, Yannick
Hansell, Dennis A.
Jenkins, Bethany D.
Karp-Boss, Lee
Kramer, Sasha J.
Lam, Phoebe J.
Lee, Jong-Mi
Maas, Amy E.
Marchal, Olivier
Marchetti, Adrian
McDonnell, Andrew M. P.
McNair, Heather
Menden-Deuer, Susanne
Morison, Francoise
Niebergall, Alexandria K.
Passow, Uta
Popp, Brian N.
Potvin, Geneviève
Resplandy, Laure
Roca-Martí, Montserrat
Roesler, Collin S.
Rynearson, Tatiana A.
Traylor, Shawnee
Santoro, Alyson E.
Seraphin, Kanesa
Sosik, Heidi M.
Stamieszkin, Karen
Stephens, Brandon M.
Tang, Weiyi
Van Mooy, Benjamin
Xiong, Yuanheng
Zhang, Xiaodong
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DOI
10.1525/elementa.2020.00107
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Keywords
Biological pump
NASA field campaign
NPP fates
Carbon cycle
Organic carbon export
Export pathways
Abstract
The goal of the EXport Processes in the Ocean from RemoTe Sensing (EXPORTS) field campaign is to develop a predictive understanding of the export, fate, and carbon cycle impacts of global ocean net primary production. To accomplish this goal, observations of export flux pathways, plankton community composition, food web processes, and optical, physical, and biogeochemical (BGC) properties are needed over a range of ecosystem states. Here we introduce the first EXPORTS field deployment to Ocean Station Papa in the Northeast Pacific Ocean during summer of 2018, providing context for other papers in this special collection. The experiment was conducted with two ships: a Process Ship, focused on ecological rates, BGC fluxes, temporal changes in food web, and BGC and optical properties, that followed an instrumented Lagrangian float; and a Survey Ship that sampled BGC and optical properties in spatial patterns around the Process Ship. An array of autonomous underwater assets provided measurements over a range of spatial and temporal scales, and partnering programs and remote sensing observations provided additional observational context. The oceanographic setting was typical of late-summer conditions at Ocean Station Papa: a shallow mixed layer, strong vertical and weak horizontal gradients in hydrographic properties, sluggish sub-inertial currents, elevated macronutrient concentrations and low phytoplankton abundances. Although nutrient concentrations were consistent with previous observations, mixed layer chlorophyll was lower than typically observed, resulting in a deeper euphotic zone. Analyses of surface layer temperature and salinity found three distinct surface water types, allowing for diagnosis of whether observed changes were spatial or temporal. The 2018 EXPORTS field deployment is among the most comprehensive biological pump studies ever conducted. A second deployment to the North Atlantic Ocean occurred in spring 2021, which will be followed by focused work on data synthesis and modeling using the entire EXPORTS data set.
Description
© The Author(s), 2021. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Siegel, D. A., Cetinic, I., Graff, J. R., Lee, C. M., Nelson, N., Perry, M. J., Ramos, I. S., Steinberg, D. K., Buesseler, K., Hamme, R., Fassbender, A. J., Nicholson, D., Omand, M. M., Robert, M., Thompson, A., Amaral, V., Behrenfeld, M., Benitez-Nelson, C., Bisson, K., Boss, E., Boyd, P. W., Brzezinski, M., Buck, K., Burd, A., Burns, S., Caprara, S., Carlson, C., Cassar, N., Close, H. H., D’Asaro, E., Durkin, C., Erickson, Z., Estapa, M. L., Fields, E., Fox, J., Freeman, S., Gifford, S., Gong, W., Gray, D., Guidi, L., Haëntjens, N., Halsey, K., Huot, Y., Hansell, D., Jenkins, B., Karp-Boss, L., Kramer, S., Lam, P., Lee, J-M., Maas, A., Marchal, O., Marchetti, A., McDonnell, A., McNair, H., Menden-Deuer, S., Morison, F., Niebergall, A. K., Passow, U., Popp, B., Potvin, G., Resplandy, L., Roca-Martí, M., Roesler, C., Rynearson, T., Traylor, S., Santoro, A., Seraphin, K. D., Sosik, H. M., Stamieszkin, K., Stephens, B., Tang, W., Van Mooy, B., Xiong, Y., Zhang, X. An operational overview of the EXport Processes in the Ocean from RemoTe Sensing (EXPORTS) Northeast Pacific field deployment. Elementa: Science of the Anthropocene, 9(1), (2021): 1, https://doi.org/10.1525/elementa.2020.00107.
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Siegel, D. A., Cetinic, I., Graff, J. R., Lee, C. M., Nelson, N., Perry, M. J., Ramos, I. S., Steinberg, D. K., Buesseler, K., Hamme, R., Fassbender, A. J., Nicholson, D., Omand, M. M., Robert, M., Thompson, A., Amaral, V., Behrenfeld, M., Benitez-Nelson, C., Bisson, K., Boss, E., Boyd, P. W., Brzezinski, M., Buck, K., Burd, A., Burns, S., Caprara, S., Carlson, C., Cassar, N., Close, H. H., D’Asaro, E., Durkin, C., Erickson, Z., Estapa, M. L., Fields, E., Fox, J., Freeman, S., Gifford, S., Gong, W., Gray, D., Guidi, L., Haëntjens, N., Halsey, K., Huot, Y., Hansell, D., Jenkins, B., Karp-Boss, L., Kramer, S., Lam, P., Lee, J-M., Maas, A., Marchal, O., Marchetti, A., McDonnell, A., McNair, H., Menden-Deuer, S., Morison, F., Niebergall, A. K., Passow, U., Popp, B., Potvin, G., Resplandy, L., Roca-Martí, M., Roesler, C., Rynearson, T., Traylor, S., Santoro, A., Seraphin, K. D., Sosik, H. M., Stamieszkin, K., Stephens, B., Tang, W., Van Mooy, B., Xiong, Y., Zhang, X. (2021). An operational overview of the EXport Processes in the Ocean from RemoTe Sensing (EXPORTS) Northeast Pacific field deployment. Elementa: Science of the Anthropocene, 9(1), 1.
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