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Bubbles, Droplets, Climate: Tellus’s Enduring Influence on Sea Spray Aerosol Research Cover

Bubbles, Droplets, Climate: Tellus’s Enduring Influence on Sea Spray Aerosol Research

Open Access
|Jul 2026

References

  1. Aitken, J. (1881). On dust, fogs, and clouds. Transactions of the Royal Society of Edinburgh, 30, 337368. 10.1017/S0080456800029069
  2. Barker, D. R., & Zeitlin, H. (1972). Metal-ion concentrations in sea-surface microlayer and size-separated atmospheric aerosol samples in Hawaii. Journal of Geophysical Research, 77(27), 50765086. 10.1029/JC077i027p05076
  3. Bates, T., Quinn, P., Coffman, D., Johnson, J., Upchurch, L., Saliba, G., Lewis, S., Graff, J., Russell, L., & Behrenfeld, M. (2020). Variability in marine plankton ecosystems are not observed in freshly emitted sea spray aerosol over the North Atlantic Ocean. Geophysical Research Letters, 47(1), e2019GL085938. 10.1029/2019GL085938
  4. Bates, T., Quinn, P., Frossard, A., Russell, L., Hakala, J., Petäjä, T., Kulmala, M., Covert, D., Cappa, C., Li, S.-M., et al. (2012). Measurements of ocean derived aerosol off the coast of California. Journal of Geophysical Research: Atmospheres, 117(D21). 10.1029/2012JD017588
  5. Beaupré, S. R., Kieber, D. J., Keene, W. C., Long, M. S., Maben, J. R., Lu, X., Zhu, Y., Frossard, A. A., Kinsey, J. D., Duplessis, P., et al. (2019). Oceanic efflux of ancient marine dissolved organic carbon in primary marine aerosol. Science Advances, 5(10), eaax6535. 10.1126/sciadv.aax6535
  6. Beck, J. B. (1819). Observations on salt storms and the influence of salt and saline air upon animal and vegetable life. American Journal of Science, 1(4), 388398.
  7. Bertram, T. H., Cochran, R. E., Grassian, V. H., & Stone, E. A. (2018). Sea spray aerosol chemical composition: Elemental and molecular mimics for laboratory studies of heterogeneous and multiphase reactions. Chemical Society Reviews, 47(7), 23742400. 10.1039/C7CS00008A
  8. Blanchard, D. C. (1963). The electrification of the atmosphere by particles from bubbles in the sea. Progress in Oceanography, 1, 73202. 10.1016/0079-6611(63)90004-1
  9. Blanchard, D. C. (1964). Sea-to-air transport of surface active material. Science, 146(3642), 396397. 10.1126/science.146.3642.396
  10. Blanchard, D. C., & Woodcock, A. H. (1957). Bubble Formation and Modification in the Sea and its Meteorological Significance. Tellus, 9(2), 145158. 10.1111/j.2153-3490.1957.tb01867.x
  11. Blanco-Rodríguez, F. J., & Gordillo, J. (2020). On the sea spray aerosol originated from bubble bursting jets. Journal of Fluid Mechanics, 886, R2. 10.1017/jfm.2019.1061
  12. Bolin, B. (1960). On the exchange of carbon dioxide between the atmosphere and the sea. Tellus, 12(3), 274281. 10.1111/j.2153-3490.1960.tb01311.x
  13. Broecker, W. S., & Peng, T.-H. (1974). Gas exchange rates between air and sea. Tellus, 26(1–2), 2135. 10.1111/j.2153-3490.1974.tb01948.x
  14. Burrows, S. M., Ogunro, O., Frossard, A., Russell, L. M., Rasch, P. J., & Elliott, S. (2014). A physically based framework for modeling the organic fractionation of sea spray aerosol from bubble film Langmuir equilibria. Atmospheric Chemistry and Physics, 14(24), 1360113629. 10.5194/acp-14-13601-2014
  15. Carter-Fenk, K. A., Dommer, A. C., Fiamingo, M. E., Kim, J., Amaro, R. E., & Allen, H. C. (2021). Calcium bridging drives polysaccharide co-adsorption to a proxy sea surface microlayer. Physical Chemistry Chemical Physics, 23(30), 1640116416. 10.1039/D1CP01407B
  16. Collins, D., Zhao, D., Ruppel, M., Laskina, O., Grandquist, J., Modini, R., Stokes, M., Russell, L., Bertram, T., Grassian, V., et al. (2014). Direct aerosol chemical composition measurements to evaluate the physicochemical differences between controlled sea spray aerosol generation schemes. Atmospheric Measurement Techniques, 7(11), 36673683. 10.5194/amt-7-3667-2014
  17. Collins, D. B., Ault, A. P., Moffet, R. C., Ruppel, M. J., Cuadra-Rodriguez, L. A., Guasco, T. L., Corrigan, C. E., Pedler, B. E., Azam, F., Aluwihare, L. I., Bertram, T. H., Roberts, G. C., Grassian, V. H., & Prather, K. A. (2013). Impact of marine biogeochemistry on the chemical mixing state and cloud forming ability of nascent sea spray aerosol. Journal of Geophysical Research: Atmospheres, 118(15), 85538565. 10.1002/jgrd.50598
  18. Collins, D. B., Bertram, T. H., Sultana, C. M., Lee, C., Axson, J. L., & Prather, K. A. (2016). Phytoplankton blooms weakly influence the cloud forming ability of sea spray aerosol. Geophysical Research Letters, 43(18), 99759983. 10.1002/2016GL069922
  19. De Leeuw, G., Andreas, E. L., Anguelova, M. D., Fairall, C., Lewis, E. R., O’Dowd, C., Schulz, M., & Schwartz, S. E. (2011). Production flux of sea spray aerosol. Reviews of Geophysics, 49(2). 10.1029/2010RG000349
  20. Deike, L. (2022). Mass transfer at the ocean–atmosphere interface: The role of wave breaking, droplets, and bubbles. Annual Review of Fluid Mechanics, 54, 191224. 10.1146/annurev-fluid-030121-014132
  21. DeMott, P. J., Hill, T. C. J., McCluskey, C. S., Prather, K. A., Collins, D. B., Sullivan, R. C., Ruppel, M. J., Mason, R. H., Irish, V. E., Lee, T., Hwang, C. Y., Rhee, T. S., Snider, J. R., McMeeking, G. R., Dhaniyala, S., Lewis, E. R., Wentzell, J. J. B., Abbatt, J., Lee, C., Sultana, C. M., Ault, A. P., Axson, J. L., Martinez, M. D., Venero, I., Santos-Figueroa, G., Stokes, M. D., Deane, G. B., Mayol-Bracero, O. L., Grassian, V. H., Bertram, T. H., Bertram, A. K., Moffett, B. F., & Franc, G. D. (2016). Sea spray aerosol as a unique source of ice nucleating particles. Proceedings of the National Academy of Sciences, 113(21), 57975803. 10.1073/pnas.1514034112
  22. Duce, R. A., & Hoffman, E. J. (1976). Chemical fractionation at the air/sea interface. Annual Review of Earth and Planetary Sciences, 4, 187228. 10.1146/annurev.ea.04.050176.001155
  23. Ellison, G. B., Tuck, A. F., & Vaida, V. (1999). Atmospheric processing of organic aerosols. Journal of Geophysical Research: Atmospheres, 104(D9), 1163311641. 10.1029/1999JD900073
  24. Facchini, M. C., Rinaldi, M., Decesari, S., Carbone, C., Finessi, E., Mircea, M., Fuzzi, S., Ceburnis, D., Flanagan, R., Nilsson, E. D., et al. (2008). Primary submicron marine aerosol dominated by insoluble organic colloids and aggregates. Geophysical Research Letters, 35(17). 10.1029/2008GL034210
  25. Feingold, G., Ghate, V. P., Russell, L. M., Blossey, P., Cantrell, W., Christensen, M. W., Diamond, M. S., Gettelman, A., Glassmeier, F., Gryspeerdt, E., et al. (2024). Physical science research needed to evaluate the viability and risks of marine cloud brightening. Science Advances, 10(12), eadi8594. 10.1126/sciadv.adi8594
  26. Forestieri, S. D., Moore, K. A., Martinez Borrero, R., Wang, A., Stokes, M. D., & Cappa, C. D. (2018). Temperature and composition dependence of sea spray aerosol production. Geophysical Research Letters, 45(14), 72187225. 10.1029/2018GL078193
  27. Grythe, H., Ström, J., Krejci, R., Quinn, P. K., & Stohl, A. (2014). A review of sea-spray aerosol source functions using a large global set of sea salt aerosol concentration measurements. Atmospheric Chemistry and Physics, 14(3), 12771297. 10.5194/acp-14-1277-2014
  28. Hoffman, E. J., & Duce, R. A. (1977). Organic carbon in marine atmospheric particulate matter: Concentration and particle size distribution. Geophysical Research Letters, 4(10), 449452. 10.1029/GL004i010p00449
  29. Jacobs, W. (1937). Preliminary report on a study of atmospheric chlorides. Monthly Weather Review, 65, 147151. 10.1175/1520-0493(1937)65<;147:PROASO>2.0.CO;2
  30. Jayarathne, T., Sultana, C. M., Lee, C., Malfatti, F., Cox, J. L., Pendergraft, M. A., Moore, K. A., Azam, F., Tivanski, A. V., Cappa, C. D., et al. (2016). Enrichment of saccharides and divalent cations in sea spray aerosol during two phytoplankton blooms. Environmental Science & Technology, 50(21), 1151111520. 10.1021/acs.est.6b02988
  31. Johansson, J. H., Salter, M. E., Navarro, J. A., Leck, C., Nilsson, E. D., & Cousins, I. T. (2019). Global transport of perfluoroalkyl acids via sea spray aerosol. Environmental Science: Processes & Impacts, 21(4), 635649. 10.1039/C8EM00525G
  32. Kientzler, C. F., Arons, A. B., Blanchard, D. C., & Woodcock, A. H. (1954). Photographic Investigation of the Projection of Droplets by Bubbles Bursting at a Water Surface. Tellus, 6(1), 17. 10.1111/j.2153-3490.1954.tb01085.x
  33. Komabayasi, M. (1964). Primary fractionation of chemical components in the formation of submicron spray drops from seasalt solution. Journal of the Meteorological Society of Japan. Ser. II, 42(5), 309316. 10.2151/jmsj1923.42.5_309
  34. Krakauer, N. Y., Randerson, J. T., Primeau, F. W., Gruber, N., & Menemenlis, D. (2006). Carbon isotope evidence for the latitudinal distribution and wind speed dependence of the air–sea gas transfer velocity. Tellus B: Chemical and Physical Meteorology, 58(5), 390417. 10.1111/j.1600-0889.2006.00223.x
  35. Lawler, M. J., Schill, G. P., Brock, C. A., Froyd, K. D., Williamson, C., Kupc, A., & Murphy, D. M. (2024). Sea spray aerosol over the remote oceans has low organic content. AGU Advances, 5(4), e2024AV001215. 10.1029/2024AV001215
  36. Lee, C., Sultana, C. M., Collins, D. B., Santander, M. V., Axson, J. L., Malfatti, F., Cornwell, G. C., Grandquist, J. R., Deane, G. B., Stokes, M. D., et al. (2015). Advancing model systems for fundamental laboratory studies of sea spray aerosol using the microbial loop. The Journal of Physical Chemistry A, 119(33), 88608870. 10.1021/acs.jpca.5b03488
  37. Liu, S., Liu, C.-C., Froyd, K. D., Schill, G. P., Murphy, D. M., Bui, T. P., Dean-Day, J. M., Weinzierl, B., Dollner, M., Diskin, G. S., et al. (2021). Sea spray aerosol concentration modulated by sea surface temperature. Proceedings of the National Academy of Sciences, 118(9), e2020583118. 10.1073/pnas.2020583118
  38. MacIntyre, F. (1970). Geochemical fractionation during mass transfer from sea to air by breaking bubbles. Tellus, 22(4), 451462. 10.1111/j.2153-3490.1970.tb00510.x
  39. Mårtensson, E., Nilsson, E., de Leeuw, G., Cohen, L., & Hansson, H.-C. (2003). Laboratory simulations and parameterization of the primary marine aerosol production. Journal of Geophysical Research: Atmospheres, 108(D9). 10.1029/2002JD002263
  40. Mayer, K. J., Wang, X., Santander, M. V., Mitts, B. A., Sauer, J. S., Sultana, C. M., Cappa, C. D., & Prather, K. A. (2020). Secondary marine aerosol plays a dominant role over primary sea spray aerosol in cloud formation. ACS Central Science, 6(12), 22592266. 10.1021/acscentsci.0c00793
  41. Miyazaki, Y., Suzuki, K., Tachibana, E., Yamashita, Y., Müller, A., Kawana, K., Nishikawa, M., Mak, J., Tsuda, A., & Mochida, M. (2020). New index of organic mass enrichment in sea spray aerosols linked With senescent status in marine phytoplankton. Scientific Reports, 10(1), 19. 10.1038/s41598-020-73718-5
  42. Monahan, E., Spiel, D., & Davidson, K. (1986). A model of marine aerosol generation via whitecaps and wave disruption. In Oceanic whitecaps: And their role in air-sea exchange processes, 167174. Springer. 10.1007/978-94-009-4668-2_16
  43. O’Dowd, C. D., Facchini, M. C., Cavalli, F., Ceburnis, D., Mircea, M., Decesari, S., Fuzzi, S., Yoon, Y. J., & Putaud, J.-P. (2004). Biogenically driven organic contribution to marine aerosol. Nature, 431(7009), 676680. 10.1038/nature02959
  44. O’Dowd, C. D., Langmann, B., Varghese, S., Scannell, C., Ceburnis, D., & Facchini, M. C. (2008). A combined organic-inorganic sea-spray source function. Geophysical Research Letters, 35(1). 10.1029/2007GL030331
  45. Oppo, C., Bellandi, S., Degli Innocenti, N., Stortini, A. M., Loglio, G., Schiavuta, E., & Cini, R. (1999). Surfactant components of marine organic matter as agents for biogeochemical fractionation and pollutant transport via marine aerosols. Marine Chemistry, 63(3–4), 235253. 10.1016/S0304-4203(98)00065-6
  46. Ovadnevaite, J., Manders, A., de Leeuw, G., Ceburnis, D., Monahan, C., Partanen, A.-I., Korhonen, H., & O’Dowd, C. D. (2014). A sea spray aerosol flux parameterization encapsulating wave state. Atmospheric Chemistry and Physics, 14(4), 18371852. 10.5194/acp-14-1837-2014
  47. O’Dowd, C., Ceburnis, D., Ovadnevaite, J., Bialek, J., Stengel, D. B., Zacharias, M., Nitschke, U., Connan, S., Rinaldi, M., Fuzzi, S., et al. (2015). Connecting marine productivity to sea-spray via nanoscale biological processes: Phytoplankton Dance or Death Disco? Scientific Reports, 5(1), 14883.
  48. Pendergraft, M. A., Belda-Ferre, P., Petras, D., Morris, C. K., Mitts, B. A., Aron, A. T., Bryant, M., Schwartz, T., Ackermann, G., Humphrey, G., et al. (2023). Bacterial and chemical evidence of coastal water pollution from the Tijuana River in sea spray aerosol. Environmental Science & Technology, 57(10), 40714081. 10.1021/acs.est.2c02312
  49. Prather, K. A., Bertram, T. H., Grassian, V. H., Deane, G. B., Stokes, M. D., DeMott, P. J., Aluwihare, L. I., Palenik, B. P., Azam, F., Seinfeld, J. H., et al. (2013). Bringing the ocean into the laboratory to probe the chemical complexity of sea spray aerosol. Proceedings of the National Academy of Sciences, 110(19), 75507555. 10.1073/pnas.1300262110
  50. Quinn, P. K., Bates, T. S., Schulz, K. S., Coffman, D., Frossard, A., Russell, L., Keene, W., & Kieber, D. (2014). Contribution of sea surface carbon pool to organic matter enrichment in sea spray aerosol. Nature Geoscience, 7(3), 228232. 10.1038/ngeo2092
  51. Quinn, P. K., Collins, D. B., Grassian, V. H., Prather, K. A., & Bates, T. S. (2015). Chemistry and related properties of freshly emitted sea spray aerosol. Chemical Reviews, 115(10), 43834399. 10.1021/cr500713g
  52. Revelle, R., & Suess, H. E. (1957). Carbon dioxide exchange between atmosphere and ocean and the question of an increase of atmospheric CO2 during the past decades. Tellus, 9(1), 1827. 10.1111/j.2153-3490.1957.tb01849.x
  53. Russell, L. M., Hawkins, L. N., Frossard, A. A., Quinn, P. K., & Bates, T. S. (2010). Carbohydrate-like composition of submicron atmospheric particles and their production from ocean bubble bursting. Proceedings of the National Academy of Sciences, 107(15), 66526657. 10.1073/pnas.0908905107
  54. Salter, M. E., Hamacher-Barth, E., Leck, C., Werner, J., Johnson, C. M., Riipinen, I., Nilsson, E. D., & Zieger, P. (2016). Calcium enrichment in sea spray aerosol particles. Geophysical Research Letters, 43(15), 82778285. 10.1002/2016GL070275
  55. Salter, M. E., Nilsson, E. D., Butcher, A., & Bilde, M. (2014). On the seawater temperature dependence of the sea spray aerosol generated by a continuous plunging jet. Journal of Geophysical Research: Atmospheres, 119(14), 90529072. 10.1002/2013JD021376
  56. Salter, M. E., Zieger, P., Acosta Navarro, J. C., Grythe, H., Kirkevåg, A., Rosati, B., Riipinen, I., & Nilsson, E. D. (2015). An empirically derived inorganic sea spray source function incorporating sea surface temperature. Atmospheric Chemistry and Physics, 15(19), 1104711066. 10.5194/acp-15-11047-2015
  57. Schill, S. R., Burrows, S. M., Hasenecz, E. S., Stone, E. A., & Bertram, T. H. (2018). The impact of divalent cations on the enrichment of soluble saccharides in primary sea spray aerosol. Atmosphere, 9(12), 476. 10.3390/atmos9120476
  58. Sellegri, K., O’Dowd, C., Yoon, Y., Jennings, S., & de Leeuw, G. (2006). Surfactants and submicron sea spray generation. Journal of Geophysical Research: Atmospheres, 111(D22). 10.1029/2005JD006658
  59. Sha, B., Johansson, J. H., Benskin, J. P., Cousins, I. T., & Salter, M. E. (2020). Influence of water concentrations of perfluoroalkyl acids (PFAAs) on their size-resolved enrichment in nascent sea spray aerosols. Environmental Science & Technology, 55(14), 94899497. 10.1021/acs.est.0c03804
  60. Sha, B., Johansson, J. H., Salter, M. E., Blichner, S. M., & Cousins, I. T. (2024). Constraining global transport of perfluoroalkyl acids on sea spray aerosol using field measurements. Science Advances, 10(14), eadl1026. 10.1126/sciadv.adl1026
  61. Sha, B., Johansson, J. H., Tunved, P., Bohlin-Nizzetto, P., Cousins, I. T., & Salter, M. E. (2021). Sea spray aerosol (SSA) as a source of perfluoroalkyl acids (PFAAs) to the atmosphere: Field evidence from long-term air monitoring. Environmental Science & Technology, 56(1), 228238. 10.1021/acs.est.1c04277
  62. Sigerson, G. (1870). Micro-atmospheric researches. Proceedings of the Royal Irish Academy. Science, 1, 1322.
  63. Stokes, M., Deane, G., Prather, K., Bertram, T., Ruppel, M., Ryder, O., Brady, J., & Zhao, D. (2013). A marine aerosol reference tank system as a breaking wave analogue for the production of foam and sea-spray aerosols. Atmospheric Measurement Techniques, 6(4), 10851094. 10.5194/amt-6-1085-2013
  64. Stokes, M. D., Deane, G., Collins, D. B., Cappa, C., Bertram, T., Dommer, A., Schill, S., Forestieri, S., & Survilo, M. (2016). A miniature Marine Aerosol Reference Tank (miniMART) as a compact breaking wave analogue. Atmospheric Measurement Techniques, 9(9), 42574267. 10.5194/amt-9-4257-2016
  65. Svenningsson, B., Rissler, J., Swietlicki, E., Mircea, M., Bilde, M., Facchini, M., Decesari, S., Fuzzi, S., Zhou, J., Mønster, J., et al. (2006). Hygroscopic growth and critical supersaturations for mixed aerosol particles of inorganic and organic compounds of atmospheric relevance. Atmospheric Chemistry and Physics, 6(7), 19371952. 10.5194/acp-6-1937-2006
  66. Van Pinxteren, M., Barthel, S., Fomba, K. W., Müller, K., Von Tümpling, W., & Herrmann, H. (2017). The influence of environmental drivers on the enrichment of organic carbon in the sea surface microlayer and in submicron aerosol particles–measurements from the Atlantic Ocean. Elementa: Science of the Anthropocene, 5, 35. 10.1525/elementa.225
  67. Wang, X., Deane, G. B., Moore, K. A., Ryder, O. S., Stokes, M. D., Beall, C. M., Collins, D. B., Santander, M. V., Burrows, S. M., Sultana, C. M., et al. (2017). The role of jet and film drops in controlling the mixing state of submicron sea spray aerosol particles. Proceedings of the National Academy of Sciences, 114(27), 69786983. 10.1073/pnas.1702420114
  68. Wang, X., Sultana, C. M., Trueblood, J., Hill, T. C. J., Malfatti, F., Lee, C., Laskina, O., Moore, K. A., Beall, C. M., McCluskey, C. S., Cornwell, G. C., Zhou, Y., Cox, J. L., Pendergraft, M. A., Santander, M. V., Bertram, T. H., Cappa, C. D., Azam, F., DeMott, P. J., Grassian, V. H., & Prather, K. A. (2015). Microbial Control of Sea Spray Aerosol Composition: A Tale of Two Blooms. ACS Central Science, 1(3), 124131. 10.1021/acscentsci.5b00148
  69. Wex, H., Fuentes, E., Tsagkogeorgas, G., Voigtländer, J., Clauss, T., Kiselev, A., Green, D. H., Coe, H., McFiggans, G., & Stratmann, F. (2010). The influence of algal exudate on the hygroscopicity of sea spray particles. Advances in Meteorology, 2010, 365131. 10.1155/2010/365131
  70. Woodcock, A. H. (1948). Note concerning human respiratory irritation associated with high concentrations of plankton and mass mortality of marine organisms. Journal of Marine Research, 7.
  71. Woodcock, A. H. (1952). Atmospheric salt particles and raindrops. Journal of Meteorology, 9, 200212. 10.1175/1520-0469(1952)009<;0200:ASPAR>2.0.CO;2
Language: English
Page range: 136 - 146
Submitted on: Jan 30, 2026
Accepted on: Jun 29, 2026
Published on: Jul 17, 2026
Published by: Stockholm University Press
In partnership with: Paradigm Publishing Services

© 2026 Matthew E. Salter, published by Stockholm University Press
This work is licensed under the Creative Commons Attribution 4.0 License.