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Archer, SD, Kimmance, SA, Stephens, JA, Hopkins, FE, Bellerby, RGJ, Schulz, K, Piontek, J and Engel, A 2013 Contrasting responses of DMS and DMSP to ocean acidification in Arctic waters. Biogeosciences, 10. 1893 - 1908. https://doi.org/10.5194/bg-10-1893-2013
Arnold, E, Findlay, HS, Spicer, JI, Daniels, L and Boothroyd, D 2009 Effect of CO2-related acidification on aspects of the larval development of the European lobster Homarus gammarus (L.). Biogeosciences, 6. 1747 - 1754.
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Artioli, Y, Blackford, JC, Nondal, G, Bellerby, RGJ, Wakelin, SL, Holt, JT, Butenschon, M and Allen, JI 2014 Heterogeneity of impacts of high CO2 on the North Western European Shelf. Biogeosciences, 11 (3). 601-612. https://doi.org/10.5194/bg-11-601-2014
Aulló-Maestro, ME, Hunter, P, Spyrakos, E, Mercatoris, P, Kovács, A, Horváth, H, Preston, T, Présing, M, Torres Palenzuela, J and Tyler, A 2017 Spatio-seasonal variability of chromophoric dissolved organic matter absorption and responses to photobleaching in a large shallow temperate lake. Biogeosciences, 14 (5). 1215-1233. https://doi.org/10.5194/bg-14-1215-2017
Beaulieu, C, Cole, H, Henson, S, Yool, A, Anderson, T, de Mora, L, Buitenhuis, ET, Butenschon, M, Totterdell, IJ and Allen, JI 2016 Marine regime shifts in ocean biogeochemical models: a case study in the Gulf of Alaska. Biogeosciences, 13 (15). 4533-4553. https://doi.org/10.5194/bg-13-4533-2016
Belcher, A, Henley, SF, Hendry, K, Wootton, M, Friberg, L, Dallman, U, Wang, T, Coath, CD and Manno, C 2023 Seasonal cycles of biogeochemical fluxes in the Scotia Sea, Southern Ocean: a stable isotope approach. Biogeosciences. https://doi.org/10.5194/bg-20-3573-2023
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Browning, TJ, Bouman, HA, Moore, CM, Schlosser, C, Tarran, GA, Woodward, EMS and Henderson, GM 2014 Nutrient regimes control phytoplankton ecophysiology in the South Atlantic. Biogeosciences, 11 (2). 463-479. https://doi.org/10.5194/bg-11-463-2014
Clark, DR, Brown, IJ, Rees, AP, Somerfield, PJ and Miller, PI 2014 The influence of ocean acidification on nitrogen regeneration and nitrous oxide production in the northwest European shelf sea. Biogeosciences, 11. 4985-5005. https://doi.org/10.5194/bg-11-4985-2014
Clark, DR, Rees, AP, Ferrera, CM, Al-Moosawi, L, Somerfield, PJ, Harris, C, Quartly, GD, Goult, S, Tarran, GA and Lessin, G 2022 Nitrite regeneration in the oligotrophic Atlantic Ocean. Biogeosciences, 19 (5). 1355-1376. https://doi.org/10.5194/bg-19-1355-2022
Clark, DR, Widdicombe, CE, Rees, AP and Woodward, EMS 2016 The significance of nitrogen regeneration for new production within a filament of the Mauritanian upwelling system. Biogeosciences, 13. 2873-2888. https://doi.org/10.5194/bg-13-2873-2016
Dall’Olmo, G, Westberry, TK, Boss, EB, Behrenfeld, M, Courties, C, Prieur, L, Hardman-Mountford, NJ and Moutin, TM 2011 Inferring phytoplankton carbon and eco-physiological rates from diel cycles of spectral particulate beam-attenuation coefficient. Biogeosciences, 8. 3423 - 3440. https://doi.org/10.5194/bg-8-3423-2011
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Dixon, JL, Beale, R and Nightingale, PD 2011 Rapid biological oxidation of methanol in the tropical Atlantic: significance as a microbial carbon source. Biogeosciences, 8. 2707 - 2716. https://doi.org/10.5194/bg-8-2707-2011
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Dixon, JL and Nightingale, PD 2012 Fine-scale variability in methanol uptake and oxidation: from the microlayer to 1000 m.. Biogeosciences, 9. 01-Dec. https://doi.org/10.5194/bg-9-2961-2012
d'Ovidio, F, Della Penna, A, Trull, TW, Nencioli, F, Pujol, M-I, Rio, M-H, Park, Y-H, Cotté, C, Zhou, M and Blain, S 2015 The biogeochemical structuring role of horizontal stirring: Lagrangian perspectives on iron delivery downstream of the Kerguelen Plateau. Biogeosciences, 12 (19). 5567-5581. https://doi.org/10.5194/bg-12-5567-2015
de Nooijer, LJ, Brombacher, A, Mewes, A, Langer, G, Nehrke, G, Bijma, J and Reichart, GJ 2017 Ba incorporation in benthic foraminifera. Biogeosciences, 14 (14). 3387-3400. https://doi.org/10.5194/bg-14-3387-2017
de Vries, J, Monteiro, FM, Langer, G, Brownlee, C and Wheeler, G 2024 A critical trade-off between nitrogen quota and growth allows Coccolithus braarudii life cycle phases to exploit varying environment. Biogeosciences, 21 (7). 1707-1727. https://doi.org/10.5194/bg-21-1707-2024
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de Vries, Joost, Monteiro, Fanny, Wheeler, Glen, Poulton, Alex, Godrijan, Jelena, Cerino, Federica, Malinverno, Elisa, Langer, Gerald and Brownlee, Colin 2021 Haplo-diplontic life cycle expands coccolithophore niche. Biogeosciences, 18 (3). 1161-1184. https://doi.org/10.5194/bg-18-1161-2021
Findlay, HS, Tyrrell, T, Bellerby, RGJ, Merico, A and Skjelvan, I 2008 Carbon and nutrient mixed layer dynamics in the Norwegian Sea. Biogeosciences, 5(5). 1395 - 1410. https://doi.org/10.5194/bg-5-1395-2008
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Ford, DJ, Tilstone, GH, Shutler, JD and Kitidis, V 2022 Derivation of seawater <i>p</i>CO<sub>2</sub> from net community production identifies the South Atlantic Ocean as a CO<sub>2</sub> source. Biogeosciences, 19 (1). 93-115. https://doi.org/10.5194/bg-19-93-2022
Ford, DJ, Tilstone, GH, Shutler, JD and Kitidis, V 2022 Identifying the biological control of the annual and multi-year variations in South Atlantic air–sea CO2 flux. Biogeosciences, 19 (17). 4287-4304. https://doi.org/10.5194/bg-19-4287-2022
Gattuso, J-P, Kirkwood, W, Barry, JP, Cox, E, Gazeau, F, Hansson, L, Hendriks, I, Kline, DI, Mahacek, P, Martin, S, McElhany, P, Peltzer, ET, Reeves, J, Roberts, D, Saderne, V, Tait, K, Widdicombe, S and Brewer, PG 2014 Free-ocean CO2 enrichment (FOCE) systems: present status and future developments. Biogeosciences, 11 (15). 4057-4075. https://doi.org/10.5194/bg-11-4057-2014
Gazeau, F, Van Wambeke, F, Maranon, E, Pérez-Lorenzo, M, Alliouane, S, Stolpe, C, Blasco, T, Leblond, N, Zäncker, B, Engel, A, Marie, B, Dinasquet, J and Guieu, C 2021 Impact of dust addition on the metabolism of Mediterranean plankton communities and carbon export under present and future conditions of pH and temperature. Biogeosciences, 18 (19). 5423-5446. https://doi.org/10.5194/bg-18-5423-2021
Gerecht, AC, Šupraha, L, Langer, G and Henderiks, J 2018 Phosphorus limitation and heat stress decrease calcification in Emiliania huxleyi. Biogeosciences, 15 (3). 833-845. https://doi.org/10.5194/bg-15-833-2018
Halloran, PR, Bell, TG and Totterdell, IJ 2010 Can we trust simple marine DMS parameterisations within complex climate models?. Biogeosciences, 7. 1646-1656. https://doi.org/10.5194/bg-7-1645-2010
Hashihama, F, Saito, H, Kodama, K, Yasui-Tamura, S, Kanda, J, Tanita, I, Ogawa, H, Woodward, EMS, Boyd, PW and Furuya, K 2020 Cross-basin differences in the nutrient assimilation characteristics of induced phytoplankton blooms in the subtropical Pacific waters.. Biogeosciences.
Hashihama, F, Saito, H, Kodama, T, Yasui-Tamura, S, Kanda, J, Tanita, I, Ogawa, H, Woodward, EMS, Boyd, PW and Furuya, K 2021 Cross-basin differences in the nutrient assimilation characteristics of induced phytoplankton blooms in the subtropical Pacific waters. Biogeosciences, 18 (3). 897-915. https://doi.org/10.5194/bg-18-897-2021
Held, NA, Webb, EA, McIlvin, MM, Hutchins, DA, Cohen, NR, Moran, DM., Kunde, K, Lohan, MC, Mahaffey, C, Woodward, EMS and Saito, MA 2020 Co-occurrence of Fe and P stress in natural populations of the marine diazotroph <i>Trichodesmium</i>. Biogeosciences, 17 (9). 2537-2551. https://doi.org/10.5194/bg-17-2537-2020
Higgs, I, Skákala, J, Bannister, R, Carrassi, A and Ciavatta, Stefano 2024 Investigating ecosystem connections in the shelf sea environment using complex networks. Biogeosciences, 21 (3). 731-746. https://doi.org/10.5194/bg-21-731-2024
Hirata, T, Hardman-Mountford, NJ, Brewin, RJW, Aiken, J, Barlow, RG, Suzuki, K, Isada, T, Howell, E, Hashioka, T, Noguchi-Aita, M and Yamanaka, Y 2011 Synoptic relationships between surface Chlorophyll-a and diagnostic pigments specific to phytoplankton functional types. Biogeosciences, 8. 311 - 327. https://doi.org/10.5194/bg-8-311-2011
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Holt, JT, Butenschon, M, Wakelin, SL, Artioli, Y and Allen, JI 2012 Oceanic controls on the primary production of the northwest European continental shelf: model experiments under recent past conditions and a potential future scenario. Biogeosciences, 9. 97 - 117. https://doi.org/10.5194/bg-9-97-2012
Hopkins, FE and Archer, SD 2014 Consistent increase in dimethyl sulfide (DMS) in response to high CO2 in five shipboard bioassays from contrasting NW European waters [in special issue: Field investigation of ocean acidification effects in northwest European seas] Biogeosciences, 11 (18). 4925-4940. https://doi.org/10.5194/bg-11-4925-2014
Hopkins, FE, Kimmance, SA, Stephens, JA, Bellerby, RGJ, Brussaard, CPD, Czerny, JC, Schulz, K and Archer, SD 2013 Response of halocarbons to ocean acidification in the Arctic. Biogeosciences, 10. 2331 - 2345. https://doi.org/10.5194/bg-10-2331-2013
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Hopkins, FE, Nightingale, PD, Stephens, JA, Moore, CM, Richier, S, Cripps, G and Archer, SD 2020 A meta-analysis of microcosm experiments shows that dimethyl sulfide (DMS) production in polar waters is insensitive to ocean acidification. Biogeosciences, 17. 163-186. https://doi.org/10.5194/bg-17-163-2020
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Hsieh, YT, Geibert, W, Woodward, EMS, Wyatt, NJ, Lohan, MC, Achterberg, EP and Henderson, GM 2021 Radium-228-derived ocean mixing and trace element inputs in the South Atlantic. Biogeosciences, 18 (5). 1645-1671. https://doi.org/10.5194/bg-18-1645-2021
Ingels, J and Vanreusel, A 2013 The importance of different spatial scales in determining structural and functional characteristics of deep-sea infauna communities. Biogeosciences, 10. 4547 - 4563. https://doi.org/10.5194/bg-10-4547-2013
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Joge, SD, Mahajan, AS, Hulswar, S, Marandino, CA, Gali, M, Bell, TG and Simo, R 2024 Dimethyl sulfide (DMS) climatologies, fluxes, and trends – Part 1: Differences between seawater DMS estimations. Biogeosciences, 21 (19). 4439-4452. https://doi.org/10.5194/bg-21-4439-2024
Joge, SD, Mahajan, AS, Hulswar, S, Marandino, CA, Gali, M, Bell, TG, Yang, M and Simo, R 2024 Dimethyl sulfide (DMS) climatologies, fluxes, and trends – Part 2: Sea–air fluxes. Biogeosciences, 21 (19). 4453-4467. https://doi.org/10.5194/bg-21-4453-2024
Keys, M, Tilstone, GH, Findlay, HS, Widdicombe, CE and Lawson, T 2018 Effects of elevated CO2 and temperature on phytoplankton community biomass, species composition and photosynthesis during an experimentally induced autumn bloom in the western English Channel. Biogeosciences, 15. 3203-3222. https://doi.org/10.5194/bg-15-3203-2018
Kitidis, V, Uher, G, Upstill-Goddard, RC, Mantoura, RFC, Spyres, G and Woodward, EMS 2006 Photochemical production of ammonium in the oligotrophic Cyprus Gyre (Eastern Mediterranean). Biogeosciences, 3. 439 - 449.
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Klintzsch, T, Langer, G, Nehrke, G, Wieland, A, Lenhart, K and Keppler, F 2019 Methane production by three widespread marine phytoplankton species: release rates, precursor compounds, and potential relevance for the environment. Biogeosciences, 16 (20). 4129-4144. https://doi.org/10.5194/bg-16-4129-2019
Krueger-Hadfield, SA, Balestreri, C, Schroeder, J, Highfield, A, Helaouët, P, Allum, J, Moate, R, Lohbeck, KT, Miller, PI, Riebesell, U, Reusch, TBH, Rickaby, REM, Young, J, Hallegraeff, G, Brownlee, C and Schroeder, DC 2014 Genotyping an Emiliania huxleyi (prymnesiophyceae) bloom event in the North Sea reveals evidence of asexual reproduction. Biogeosciences, 11 (18). 5215-5234. https://doi.org/10.5194/bg-11-5215-2014
Kwiatkowski, L, Yool, A, Allen, JI, Anderson, TR, Barciela, R, Buitenhuis, ET, Butenschon, M, Enright, C, Halloran, PR, Le Quere, C, de Mora, L, Racault, M-FLP, Sinha, B, Totterdell, IJ and Cox, PM 2014 iMarNet: an ocean biogeochemistry model intercomparison project within a common physical ocean modelling framework. Biogeosciences, 11 (24). 7291-7304. https://doi.org/10.5194/bg-11-7291-2014
Lachkar, Z, Mehari, M, Al Azhar, M, Levy, M and Smith, S 2021 Fast local warming is the main driver of recent deoxygenation in the northern Arabian Sea. Biogeosciences, 18 (20). 5831-5849. https://doi.org/10.5194/bg-18-5831-2021
Land, PE, Shutler, J, Cowling, RD, Woolf, DK, Walker, P, Findlay, HS, Upstill-Goddard, RC and Donlon, CJ 2013 Climate change impacts on sea–air fluxes of CO2 in three Arctic seas: a sensitivity study using Earth observation. Biogeosciences, 10 (12). 8109-8128. https://doi.org/10.5194/bg-10-8109-2013
Le Quéré, C, Buitenhuis, ET, Moriarty, R, Alvain, S, Aumont, O, Bopp, L, Chollet, S, Enright, C, Franklin, DJ, Geider, RJ, Harrison, SP, Hirst, AG, Larsen, S, Legendre, L, Platt, T, Prentice, IC, Rivkin, RB, Sailley, SF, Sathyendranath, S, Stephens, N, Vogt, M and Vallina, SM 2016 Role of zooplankton dynamics for Southern Ocean phytoplankton biomass and global biogeochemical cycles. Biogeosciences, 13 (14). 4111-4133. https://doi.org/10.5194/bg-13-4111-2016
Lenhart, K, Klintzsch, T, Langer, G, Nehrke, G, Bunge, M, Schnell, S and Keppler, F 2016 Evidence for methane production by the marine algae <i>Emiliania huxleyi</i>. Biogeosciences, 13 (10). 3163-3174. https://doi.org/10.5194/bg-13-3163-2016
Loisel, H, Vantrepotte, V, Norkvist, K, Meriaux, X, Kheireddine, M, Ras, J, Pujo-Pay, M, Combet, Y, Leblanc, K, Dall’Olmo, G, Mauriac, R, Dessailly, D and Moutin, TM 2011 Characterization of the bio-optical anomaly and diurnal variability of particulate matter as seen from scattering and backscattering coefficients in ultra-oligotrophic eddies of the Mediterranean Sea. Biogeosciences, 8. 3295 - 3317. https://doi.org/10.5194/bg-8-3295-2011
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Manville, G, Bell, TG, Mulcahy, JP, Simo, R, Gali, M, Mahajan, AS, Hulswar, S and Halloran, PR 2023 Global analysis of the controls on seawater dimethylsulfide spatial variability. Biogeosciences, 20 (9). 1813-1828. https://doi.org/10.5194/bg-20-1813-2023
Marañó, E, Van Wambeke, F, Uitz, J, Boss, ES, Dimier, C, Dinasquet, J, Engel, A, Haëntjens, N, Pérez-Lorenzo, M and Zäncker, B et al 2021 Deep maxima of phytoplankton biomass, primary production and bacterial production in the Mediterranean Sea. Biogeosciences, 18. 1749-1767. https://doi.org/10.5194/bg-18-1749-2021
Marrec, P, Cariou, T, Mace, E, Morin, P, Salt, LA, Vernet, M, Taylor, B, Paxman, K and Bozec, Y 2015 Dynamics of air–sea CO2 fluxes in the northwestern European shelf based on voluntary observing ship and satellite observations. Biogeosciences, 12. 5371-5391. https://doi.org/10.5194/bg-12-5371-2015
Palacz, AP, St John, M, Brewin, RJW, Hirata, T and Gregg, W 2013 Distribution of phytoplankton functional types in high-nitrate low-chlorophyll waters in a new diagnostic ecological indicator model. Biogeosciences, 10. 7553 - 7574. https://doi.org/10.5194/bg-10-7553-2013
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Price, EL, Stern, RF, Mahaffey, C, Castellani, C and Jeffreys, RM 2021 Sensitivity of plankton assemblages to hydroclimate variability in the Barents Sea.. Biogeosciences. https://doi.org/10.5194/bg-2021-279 (Submitted)
Prytherch, J, Murto, S, Brown, IJ, Ulfsbo, A, Thornton, BF, Brüchert, V, Tjernström, M, Hermansson, AL, Nylund, AT and Holthusen, LA 2024 Central Arctic Ocean surface–atmosphere exchange of CO2 and CH4 constrained by direct measurements. Biogeosciences, 21 (2). 671-688. https://doi.org/10.5194/bg-21-671-2024
Ridgwell, AJ, Schmidt, DN, Turley, CM, Brownlee, C, Maldonado, MT, Tortell, P and Young, JR 2009 From laboratory manipulations to Earth system models: scaling calcification impacts of ocean acidification. Biogeosciences, 11. 2611 - 2623.
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Rosas-Navarro, A, Langer, G and Ziveri, P 2016 Temperature affects the morphology and calcification of Emiliania huxleyi strains. Biogeosciences, 13 (10). 2913-2926. https://doi.org/10.5194/bg-13-2913-2016
Roy, A-S, Gibbons, SM, Schunck, H, Owens, S, Caporaso, JG, Sperling, M, Nissimov, JI, Romac, S, Bittner, L, Muhling, M, Riebesell, U, LaRoche, J and Gilbert, JA 2013 Ocean acidification shows negligible impacts on high-latitude bacterial community structure in coastal pelagic mesocosms. Biogeosciences, 10 (1). 555-566. https://doi.org/10.5194/bg-10-555-2013
Saba, VS, Friedrichs, MAM, Antoine, D, Armstrong, RA, Asanuma, I, Behrenfeld, M, Ciotti, AM, Dowell, M, Hoepffner, N, Hyde, KJW and Smyth, TJ 2011 An evaluation of ocean color model estimates of marine primary productivity in coastal and pelagic regions across the globe. Biogeosciences, 8. 489 - 503. https://doi.org/10.5194/bg-8-489-2011
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Sargeant, SL, Murrell, JC, Nightingale, PD and Dixon, JL 2018 Basin-scale variability of microbial methanol uptake in the Atlantic Ocean. Biogeosciences, 15. 5155-5167. https://doi.org/10.5194/bg-15-5155-2018
Schlosser, C, Schmidt, K, Aquilina, A, Homoky, WB, Castrillejo, M, Mills, RA, Patey, MD, Fielding, S, Atkinson, A and Achterberg, EP 2018 Mechanisms of dissolved and labile particulate iron supply to shelf waters and phytoplankton blooms off South Georgia, Southern Ocean. Biogeosciences, 15 (16). 4973-4993. https://doi.org/10.5194/bg-15-4973-2018
Schmidt, K, Brown, TA, Belt, ST, Ireland, LC, Taylor, KWR, Thorpe, SE, Ward, P and Atkinson, A 2018 Do pelagic grazers benefit from sea ice? Insights from the Antarctic sea ice proxy IPSO25. Biogeosciences, 15. 1987-2006. https://doi.org/10.5194/bg-15-1987-2018
Shutler, J, Land, PE, Brown, CW, Findlay, HS, Donlon, CJ, Medland, M, Snooke, R and Blackford, JC 2013 Coccolithophore surface distributions in the North Atlantic and their modulation of the air-sea flux of CO2 from 10 years of satellite Earth observation data. Biogeosciences, 10 (4). 2699-2709. https://doi.org/10.5194/bg-10-2699-2013
Sims, RP, Bedington, M, Schuster, U, Watson, AJ, Kitidis, V, Torres, R, Findlay, HS, Fishwick, J, Brown, IJ and Bell, TG 2022 Tidal mixing of estuarine and coastal waters in the western English Channel is a control on spatial and temporal variability in seawater CO<sub>2</sub>. Biogeosciences, 19 (6). 1657-1674. https://doi.org/10.5194/bg-19-1657-2022
Sperling, M, Piontek, J, Gerdts, G, Wichels, A, Schunck, H, Roy, A-S, La Roche, J, Gilbert, JA, Nissimov, JI, Bittner, L, Romac, S, Riebesell, U and Engel, A 2013 Effect of elevated CO<sub>2</sub> on the dynamics of particle-attached and free-living bacterioplankton communities in an Arctic fjord. Biogeosciences, 10 (1). 181-191. https://doi.org/10.5194/bg-10-181-2013
Stemmann, L, Eloire, D, Sciandra, A, Jackson, GA, Guidi, L, Picheral, M and Gorsky, G 2008 Volume distribution for particles between 3.5 to 2000 mu m in the upper 200 m region of the South Pacific Gyre. Biogeosciences, 5 (2). 299 - 310.
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Stubbins, AP, Law, CS, Uher, G and Upstill-Goddard, RC 2011 Carbon monoxide apparent quantum yields and photoproduction in the Tyne estuary. Biogeosciences, 8. 703 - 713. https://doi.org/10.5194/bg-8-703-2011
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Talmy, D, Blackford, JC, Hardman-Mountford, NJ, Polimene, L, Follows, MJ and Geider, RJ 2014 Flexible C : N ratio enhances metabolism of large phytoplankton when resource supply is intermittent. Biogeosciences, 11 (17). 4881-4895. https://doi.org/10.5194/bg-11-4881-2014
Thurber, AR, Sweetman, AK, Narayanaswamy, BE, Jones, DOB, Ingels, J and Hansman, RL 2014 Ecosystem function and services provided by the deep sea. Biogeosciences, 11 (14). 3941-3963. https://doi.org/10.5194/bg-11-3941-2014
Van Wambeke, F, Pulido, E, Catala, P, Dinasquet, J, Djaoudi, K, Engel, A, Garel, M, Guasco, S, Marie, B, Nunige, S, Taillandier, V, Zäncker, B and Tamburini, C 2021 Spatial patterns of ectoenzymatic kinetics in relation to biogeochemical properties in the Mediterranean Sea and the concentration of the fluorogenic substrate used. Biogeosciences, 18 (7). 2301-2323. https://doi.org/10.5194/bg-18-2301-2021
Wang, W, Song, G, Primeau, F, Saltzman, ES, Bell, TG and Moore, JK 2020 Global ocean dimethyl sulfide climatology estimated from observations and an artificial neural network. Biogeosciences, 17 (21). 5335-5354. https://doi.org/10.5194/bg-17-5335-2020
Ward, JPJ, Hendry, KR, Arndt, S, Faust, JC, Freitas, FS, Henley, SF, Krause, JW, Marz, C, Tessin, AC and Airs, RL 2022 Benthic silicon cycling in the Arctic Barents Sea: a reaction–transport model study. Biogeosciences, 19 (14). 3445-3467. https://doi.org/10.5194/bg-19-3445-2022
Williams, CAJ, Hull, T, Kaiser, J, Mahaffey, C, Greenwood, N, Toberman, M and Palmer, MR 2024 Vertical mixing alleviates autumnal oxygen deficiency in the central North Sea. Biogeosciences, 21 (7). 1961-1971. https://doi.org/10.5194/bg-21-1961-2024
Wilson, ST, Bange, HW, Arévalo-Martínez, DL, Barnes, J, Borges, AV, Brown, I, Bullister, JL, Burgos, M, Capelle, DW, Casso, M, de la Paz, M, Farías, L, Fenwick, L, Ferrón, S, Garcia, G, Glockzin, M, Karl, DM, Kock, A, Laperriere, S, Law, CS, Manning, CC, Marriner, A, Myllykangas, J-P, Pohlman, JW, Rees, AP, Santoro, AE, Tortell, PD, Upstill-Goddard, RC, Wisegarver, DP, Zhang, G-L and Rehder, G 2018 An intercomparison of oceanic methane and nitrous oxide measurements. Biogeosciences, 15 (19). 5891-5907. https://doi.org/10.5194/bg-15-5891-2018
Wohl, C, Brown, IJ, Kitidis, V, Jones, AE, Sturges, WT, Nightingale, PD and Yang, M 2020 Underway seawater and atmospheric measurements of volatile organic compounds in the Southern Ocean. Biogeosciences, 17 (9). 2593-2619. https://doi.org/10.5194/bg-17-2593-2020
Wood, HL, Widdicombe, S and Spicer, JI 2009 The influence of hypercapnia and the infaunal brittlestar Amphiura filiformis on sediment nutrient flux - will ocean acidification affect nutrient exchange?. Biogeosciences, 6. 2015 - 2024.
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Wyatt, NJ, Milne, A, Achterberg, EP, Browning, TJ, Bouman, HA, Woodward, EMS and Lohan, MC 2020 Seasonal cycling of zinc and cobalt in the Southeast Atlantic along the GEOTRACES GA10 section. Biogeosciences. https://doi.org/10.5194/bg-2020-42 (Submitted)
Wyatt, NJ, Milne, A, Achterberg, EP, Browning, TJ, Bouman, HA, Woodward, EMS and Lohan, MC 2021 Seasonal cycling of zinc and cobalt in the south-eastern Atlantic along the GEOTRACES GA10 section. Biogeosciences, 18 (14). 4265-4280. https://doi.org/10.5194/bg-18-4265-2021
Yang, M, Bell, TG, Brown, IJ, Fishwick, J, Kitidis, V, Nightingale, PD, Rees, AP and Smyth, TJ 2019 Insights from year-long measurements of air–water CH4 and CO2 exchange in a coastal environment. Biogeosciences, 16 (5). 961-978. https://doi.org/10.5194/bg-16-961-2019
Zäncker, B, Cunliffe, M and Engel, A 2021 Eukaryotic community composition in the sea surface microlayer across an east–west transect in the Mediterranean Sea. Biogeosciences, 18. 2107-2118. https://doi.org/10.5194/bg-18-2107-2021