Particle cycling rates at Station P as estimated from the inversion of POC concentration data
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[1] D. Steinberg,et al. Cloud shadows drive vertical migrations of deep-dwelling marine life , 2021, Proceedings of the National Academy of Sciences.
[2] C. Benitez‐Nelson,et al. Concentrations, ratios, and sinking fluxes of major bioelements at Ocean Station Papa , 2021, Elementa: Science of the Anthropocene.
[3] D. Steinberg,et al. Fecal pellet production by mesozooplankton in the subarctic Northeast Pacific Ocean , 2021, Limnology and Oceanography.
[4] C. Carlson,et al. Allometry and the calculation of zooplankton metabolism in the subarctic Northeast Pacific Ocean , 2021 .
[5] R. Kelly,et al. Biogenic sinking particle fluxes and sediment trap collection efficiency at Ocean Station Papa , 2021, Elementa: Science of the Anthropocene.
[6] Craig M. Lee,et al. An operational overview of the EXport Processes in the Ocean from RemoTe Sensing (EXPORTS) Northeast Pacific field deployment , 2021, Elementa: Science of the Anthropocene.
[7] Dennis A. Hansell,et al. Organic Matter Composition at Ocean Station Papa Affects Its Bioavailability, Bacterioplankton Growth Efficiency and the Responding Taxa , 2020, Frontiers in Marine Science.
[8] C. Benitez‐Nelson,et al. High-resolution spatial and temporal measurements of particulate organic carbon flux using thorium-234 in the northeast Pacific Ocean during the EXport Processes in the Ocean from RemoTe Sensing field campaign , 2020, Elementa: Science of the Anthropocene.
[9] S. Menden‐Deuer,et al. Protist grazing contributes to microbial food web at the upper boundary of the twilight zone in the subarctic Pacific , 2020 .
[10] Hervé Claustre,et al. Major role of particle fragmentation in regulating biological sequestration of CO2 by the oceans , 2020, Science.
[11] L. Guidi,et al. Sinking Organic Particles in the Ocean—Flux Estimates From in situ Optical Devices , 2020, Frontiers in Marine Science.
[12] G. Boffetta,et al. Turbulence induces clustering and segregation of non-motile, buoyancy-regulating phytoplankton , 2019, Journal of the Royal Society Interface.
[13] A. Oschlies,et al. The effect of marine aggregate parameterisations on nutrients and oxygen minimum zones in a global biogeochemical model , 2019, Biogeosciences.
[14] N. Bates,et al. Size-fractionated distributions of suspended particle concentration and major phase composition from the U.S. GEOTRACES Eastern Pacific Zonal Transect (GP16) , 2017 .
[15] K. Buesseler,et al. 234Th as a tracer of particulate export and remineralization in the southeastern tropical Pacific , 2017 .
[16] O. Marchal,et al. Kinetics of thorium and particle cycling along the U.S. GEOTRACES North Atlantic Transect , 2017 .
[17] D. Steinberg,et al. Zooplankton and the Ocean Carbon Cycle. , 2017, Annual review of marine science.
[18] B. Gemmell,et al. Dynamic sinking behaviour in marine phytoplankton: rapid changes in buoyancy may aid in nutrient uptake , 2016, Proceedings of the Royal Society B: Biological Sciences.
[19] S. Henson,et al. Role of zooplankton in determining the efficiency of the biological carbon pump , 2016 .
[20] A. Solow,et al. Testing models of thorium and particle cycling in the ocean using data from station GT11-22 of the U.S. GEOTRACES North Atlantic section , 2016 .
[21] M. Brzezinski,et al. Prediction of the Export and Fate of Global Ocean Net Primary Production: The EXPORTS Science Plan , 2016, Front. Mar. Sci..
[22] Amala Mahadevan,et al. The Impact of Submesoscale Physics on Primary Productivity of Plankton. , 2016, Annual review of marine science.
[23] Volker Ratmeyer,et al. Time series of in-situ particle properties and sediment trap fluxes in the coastal upwelling filament off Cape Blanc, Mauritania , 2015 .
[24] P. Boyd,et al. RESPIRE: An in situ particle interceptor to conduct particle remineralization and microbial dynamics studies in the oceans’ Twilight Zone , 2015 .
[25] Olivier Aumont,et al. PISCES-v2: an ocean biogeochemical model for carbon and ecosystem studies , 2015 .
[26] P. Lam,et al. Cycling of lithogenic marine particles in the US GEOTRACES North Atlantic transect , 2015 .
[27] C. Friedrichs,et al. Image processing methods for in situ estimation of cohesive sediment floc size, settling velocity, and density , 2015 .
[28] A. Burd,et al. Simulating aggregate dynamics in ocean biogeochemical models , 2015 .
[29] G. Jackson. Coagulation in a rotating cylinder , 2015 .
[30] E. Achterberg,et al. Attenuation of sinking particulate organic carbon flux through the mesopelagic ocean , 2015, Proceedings of the National Academy of Sciences.
[31] A. Burd. Modeling particle aggregation using size class and size spectrum approaches , 2013 .
[32] H. Ploug,et al. Temperature effects on carbon-specific respiration rate and sinking velocity of diatom aggregates - potential implications for deep ocean export processes , 2013 .
[33] P. Lam,et al. Getting good particles: Accurate sampling of particles by large volume in‐situ filtration , 2012 .
[34] U. Riebesell,et al. An approach for particle sinking velocity measurements in the 3–400 μm size range and considerations on the effect of temperature on sinking rates , 2012, Marine biology.
[35] K. Buesseler,et al. A new method for the estimation of sinking particle fluxes from measurements of the particle size distribution, average sinking velocity, and carbon content , 2012 .
[36] T. Trull,et al. Controls on mesopelagic particle fluxes in the Sub-Antarctic and Polar Frontal Zones in the Southern Ocean south of Australia in summer—Perspectives from free-drifting sediment traps , 2011 .
[37] K. Buesseler,et al. Variability in the average sinking velocity of marine particles , 2010 .
[38] D. Wolf-Gladrow,et al. A novel method to measure particle sinking velocity in vitro, and its comparison to three other in vitro methods , 2010 .
[39] George A. Jackson,et al. High resolution profiles of vertical particulate organic matter export off Cape Blanc, Mauritania: Degradation processes and ballasting effects , 2010 .
[40] H. Ploug,et al. Ballast minerals and the sinking carbon flux in the ocean: carbon-specific respiration rates and sinking velocity of marine snow aggregates , 2010 .
[41] Reiner Schlitzer,et al. Impact of particle aggregation on vertical fluxes of organic matter , 2009 .
[42] R. Armstrong,et al. An improved benchmark method for estimating particle settling velocities from time-series sediment trap fluxes , 2009 .
[43] S. Wakeham,et al. Sampling the vertical particle flux in the upper water column using a large diameter free-drifting NetTrap adapted to an Indented Rotating Sphere sediment trap , 2009 .
[44] S. Fowler,et al. Particulate organic matter and ballast fluxes measured using time-series and settling velocity sediment traps in the northwestern Mediterranean Sea , 2009 .
[45] S. Wakeham,et al. Settling velocity spectra and the ballast ratio hypothesis , 2009 .
[46] G. Fischer,et al. Ballast, sinking velocity, and apparent diffusivity within marine snow and zooplankton fecal pellets: Implications for substrate turnover by attached bacteria , 2008 .
[47] Richard A. Krishfield,et al. Particulate organic carbon fluxes to the ocean interior and factors controlling the biological pump: A synthesis of global sediment trap programs since 1983 , 2008 .
[48] E. Buitenhuis,et al. Production, oxygen respiration rates, and sinking velocity of copepod fecal pellets: Direct measurements of ballasting by opal and calcite , 2008 .
[49] D. Varela,et al. Seasonal and interannual variability in phytoplankton and nutrient dynamics along Line P in the NE subarctic Pacific , 2007 .
[50] S. Fowler,et al. An assessment of the use of sediment traps for estimating upper ocean particle fluxes , 2007 .
[51] Deborah K. Steinberg,et al. Revisiting Carbon Flux Through the Ocean's Twilight Zone , 2006, Science.
[52] K. O’Brien,et al. Particle tracking in a salinity gradient: A method for measuring sinking rate of individual phytoplankton in the laboratory , 2006 .
[53] Stuart G. Wakeham,et al. Novel techniques for collection of sinking particles in the ocean and determining their settling rates , 2005 .
[54] L. Stemmann,et al. A vertical model of particle size distributions and fluxes in the midwater column that includes biological and physical processes—Part I: model formulation , 2004 .
[55] A. Calbet. Mesozooplankton grazing effect on primary production: A global comparative analysis in marine ecosystems , 2001 .
[56] Deborah K. Steinberg,et al. Upper Ocean Carbon Export and the Biological Pump , 2001 .
[57] M. Pahlow,et al. Temporal trends in deep ocean redfield ratios. , 2000, Science.
[58] H. Grossart,et al. Bacterial production and respiration in suspended aggregates - a matter of the incubation method , 1999 .
[59] B. Jørgensen,et al. Photosynthesis, respiration, and carbon turnover in sinking marine snow from surface waters of Southern California Bight: Implications for the carbon cycle in the ocean. , 1999 .
[60] B. Jørgensen,et al. A net-jet flow system for mass transfer and microsensor studies of sinking aggregates , 1999 .
[61] P. Hill. Controls on Floc Size in the Sea , 1998 .
[62] S. Gallager,et al. New measurements of phytoplankton aggregation in a flocculator using videography and image analysis , 1997 .
[63] T. Owen,et al. A robust in situ settling velocity box for coastal seas , 1996 .
[64] R. Murnane,et al. Least-squares estimates of thorium, particle, and nutrient cycling rate constants from the JGOFS North Atlantic Bloom Experiment , 1996 .
[65] David C. Smith,et al. Intense hydrolytic enzyme activity on marine aggregates and implications for rapid particle dissolution , 1992, Nature.
[66] T. Gross,et al. In-situ measurements of particle settling velocity in the deep sea , 1991 .
[67] A. Alldredge,et al. The physical strength of marine snow and its implications for particle disaggregation in the ocean , 1990 .
[68] R. Sternberg,et al. A new instrument for measuring settling velocities in situ , 1989 .
[69] M. Denis,et al. Deep-ocean metabolic CO2 production: calculations from ETS activity , 1988 .
[70] David M. Karl,et al. VERTEX: carbon cycling in the northeast Pacific , 1987 .
[71] Vernon L. Asper,et al. Measuring the flux and sinking speed of marine snow aggregates , 1987 .
[72] Kozo Takahashi. Seasonal fluxes of pelagic diatoms in the subarctic Pacific, 1982–1983 , 1986 .
[73] R. Eppley,et al. The residence time of particulate organic carbon in the surface layer of the ocean , 1983 .