Effects of solar UV radiation and climate change on biogeochemical cycling: interactions and feedbacks (original) (raw)
References
R. G. Zepp, T. V. Callaghan and D. J. Erickson, Interactive effects of ozone depletion and climate change on biogeochemical cycles, Photochem. Photobiol. Sci., 2003, 2, 51–61. ArticleCASPubMed Google Scholar
R. G. Zepp, D. J. Erickson, III, N. D. Paul and B. Sulzberger, Interactive effects of solar UV radiation and climate change on biogochemical cycling, Photochem. Photobiol. Sci., 2007, 6, 286–700. ArticleCASPubMed Google Scholar
R. L. McKenzie, P. J. Aucamp, A. F. Bais, L. O. Björn, M. Ilyas and S. Madronich, Ozone depletion and climate change: impacts on UV radiation, Photochem. Photobiol. Sci., 2011, 10, DOI: 10.1039/c0pp90034f.
C. L. Ballaré, M. M. Caldwell, S. D. Flint, S. A. Robinson and J. F. Bornman, Effects of solarUVradiation on terrestrial ecosystems. Patterns, mechanisms, and interactions with climate change, Photochem. Photobiol. Sci., 2011, 10, DOI: 10.1039/c0pp90035d.
D.-P. Häder, E. W. Helbling, C. E. Williamson and R. C. Worrest, Effects on Aquatic Ecosystems and Interactions with Climate Change, Photochem. Photobiol. Sci., 2011, 10, DOI: 10.1039/c0pp90036b.
P. Forster, V. Ramaswamy, P. Artaxo, T. Berntsen, R. Betts, D. W. Fahey, J. Haywood, J. Lean, D. C. Lowe, G. Myhre, J. Nganga, R. Prinn, G. Raga, M. Schulz and R. V. Dorland, Changes in Atmospheric Constituents and in Radiative Forcing, in Climate Change 2007: The Physical Science Basis. Contribution of Working Group I to the Fourth AssessmentReport of the Intergovernmental Panel on Climate Change, ed. S. Solomon, D. Qin, M. Manning, Z. Chen, M. Marquis, K. B. Averyt, M. Tignor and H. L. Miller, Cambridge University Press, Cambridge, United Kingdom and New York, NY, USA, 2007, pp. 129–234. Google Scholar
A. R. Ravishankara, J. S. Daniel and R.W. Portmann, Nitrous Oxide (N2O): The Dominant Ozone-Depleting Substance Emitted in the 21st Century, Science, 2009, 326, 123–125. ArticleCASPubMed Google Scholar
J. G. Canadell, C. Le Quere, M. R. Raupach, C. B. Field, E. T. Buitenhuis, P. Ciais, T. J. Conway, N. P. Gillett, R. A. Houghton and G. Marland, Contributions to accelerating atmospheric CO2 growth from economic activity, carbon intensity, and efficiency of natural sinks, Proc. Natl. Acad. Sci. U. S. A., 2007, 104, 18866–18870. ArticleCASPubMedPubMed Central Google Scholar
W. Knorr, Is the airborne fraction of anthropogenic CO2 emissions increasing?, Geophys. Res. Lett., 2009, 36, 5. ArticleCAS Google Scholar
C. Le Quere, M. R. Raupach, J. G. Canadell, G. Marland, L. Bopp, P. Ciais, T. J. Conway, S. C. Doney, R. A. Feely, P. Foster, P. Friedlingstein, K. Gurney, R. A. Houghton, J. I. House, C. Huntingford, P. E. Levy, M. R. Lomas, J. Majkut, N. Metzl, J. P. Ometto, G. P. Peters, I. C. Prentice, J. T. Randerson, S. W. Running, J. L. Sarmiento, U. Schuster, S. Sitch, T. Takahashi, N. Viovy, G. R. van der Werf and F. I. Woodward, Trends in the sources and sinks of carbon dioxide, Nat. Geosci., 2009, 2, 831–836. ArticleCAS Google Scholar
N. Gruber, M. Gloor, S. E. M. Fletcher, S. C. Doney, S. Dutkiewicz, M. J. Follows, M. Gerber, A. R. Jacobson, F. Joos, K. Lindsay, D. Menemenlis, A. Mouchet, S. A. Muller, J. L. Sarmiento and T. Takahashi, Oceanic sources, sinks, and transport of atmospheric CO2, Global Biogeochem. Cycles, 2009, 23, 21. ArticleCAS Google Scholar
S. E. M. Fletcher, N. Gruber, A. R. Jacobson, M. Gloor, S. C. Doney, S. Dutkiewicz, M. Gerber, M. Follows, F. Joos, K. Lindsay, D. Menemenlis, A. Mouchet, S. A. Muller and J. L. Sarmiento, Inverse estimates of the oceanic sources and sinks of natural CO2 and the implied oceanic carbon transport, Global Biogeochem. Cycles, 2007, 21, GB1010. Google Scholar
P. Quay, R. Sonnerup, J. Stutsman, J. Maurer, A. Kortzinger, X. A. Padin and C. Robinson, Anthropogenic CO2 accumulation rates in the North Atlantic Ocean from changes in the C13/C12 of dissolved inorganic carbon, Global Biogeochem. Cycles, 2007, 21, GB1009. ArticleCAS Google Scholar
S. L. Piao, P. Ciais, P. Friedlingstein, P. Peylin, M. Reichstein, S. Luyssaert, H. Margolis, J. Y. Fang, A. Barr, A. P. Chen, A. Grelle, D. Y. Hollinger, T. Laurila, A. Lindroth, A. D. Richardson and T. Vesala, Net carbon dioxide losses of northern ecosystems in response to autumn warming, Nature, 2008, 451, 49–U43. ArticleCASPubMed Google Scholar
P. Cox and C. Jones, Climate change - Illuminating the modern dance of climate and CO2, Science, 2008, 321, 1642–1644. ArticleCASPubMed Google Scholar
A. Lenton, F. Codron, L. Bopp, N. Metzl, P. Cadule, A. Tagliabue and J. Le Sommer, Stratospheric ozone depletion reduces ocean carbon uptake and enhances ocean acidification, Geophys. Res. Lett., 2009, 36, 5. ArticleCAS Google Scholar
H. Thomas, A. E. F. Prowe, I. D. Lima, S. C. Doney, R. Wanninkhof, R. J. Greatbatch, U. Schuster and A. Corbiere, Changes in the North Atlantic Oscillation influence CO2 uptake in the North Atlantic over the past 2 decades, Global Biogeochem. Cycles, 2008, 22, 13.
H. Thomas, A. E. F. Prowe, S. van Heuven, Y. Bozec, H. J. W. de Baar, L. S. Schiettecatte, K. Suykens, M. Kone, A. V. Borges, I. D. Lima and S. C. Doney, Rapid decline of the CO2 buffering capacity in the North Sea and implications for the North Atlantic Ocean, Global Biogeochem. Cycles, 2007, 21, 13. ArticleCAS Google Scholar
H. D. Matthews, M. Eby, T. Ewen, P. Friedlingstein and B. J. Hawkins, What determines the magnitude of carbon cycle-climate feedbacks?, Global Biogeochem. Cycles, 2007, 21, GB2012. ArticleCAS Google Scholar
H. D. Matthews, N. P. Gillett, P. A. Stott and K. Zickfeld, The proportionality of global warming to cumulative carbon emissions, Nature, 2009, 459, 829–U823. ArticleCASPubMed Google Scholar
K. Zickfeld, M. Eby and A. J. Weaver, Carbon-cycle feedbacks of changes in the Atlantic meridional overturning circulation under future atmospheric CO2, Global Biogeochem. Cycles, 2008, 22, GB3024. ArticleCAS Google Scholar
A. R. Ganguly, K. Steinhaeuser, D. J. Erickson III, M. Branstetter, E. S. Parish, N. Singh, J. B. Drake and L. Buja, Higher trends but larger uncertainty and geographic variability in 21st century temperature and heat waves, Proc. Natl. Acad. Sci. U. S. A., 2009, 106, 15555–15559. ArticleCASPubMedPubMed Central Google Scholar
D. Baldocchi, Breathing of the terrestrial biosphere: lessons learned from a global network of carbon dioxide flux measurement systems, Aust. J. Bot., 2008, 56, 1–26. ArticleCAS Google Scholar
M. M. Caldwell, J. F. Bornman, C. L. Ballare, S. D. Flint and Kulandaivelu, Terrestrial ecosystems, increased ultraviolet radiation, and interactions with other climate change factors, Photochem. Photobiol. Sci., 2007, 6, 252–266. ArticleCASPubMed Google Scholar
A. T. Austin and L. Vivanco, Plant litter decomposition in a semiarid ecosystem controlled by photodegradation, Nature, 2006, 442, 555–558. ArticleCASPubMed Google Scholar
L. A. Brandt, C. Bohnet and J. Y. King, Photochemically induced carbon dioxide production as a mechanism for carbon loss from plant litter in arid ecosystems, J. Geophys. Res. Biogeosci., 2009, 114, 13. Google Scholar
H. A. L. Henry, K. Brizgys and C. B. Field, Litter decomposition in a california annual grassland: Interactions between photodegradation and litter layer thickness, Ecosystems, 2008, 11, 545–554. ArticleCAS Google Scholar
A. G. F. Fischlin, G. F. Midgley, J. T. Price, R. Leemans, B. Gopal, C. Turley, M. D. A. Rounsevell, O. P. Dube, J. Tarazona and A. A. Velichko, Ecosystems, their properties, goods, and services in Climate Change 2007: Impacts, Adaptation and Vulnerability. Contribution of Working Group II to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change, ed. M. L. Parry, O. F. Canziani, J. P. Palutikof, P. J. v. d. Linden and C. E. Hanson, Cambridge University Press, Cambridge, UK, 2007, pp. 211–272. Google Scholar
M. Giese, Y. Z. Gao, Y. Zhao, Q. M. Pan, S. Lin, S. Peth and H. Brueck, Effects of grazing and rainfall variability on root and shoot decomposition in a semi-arid grassland, Appl. Soil Ecol., 2009, 41, 8–18. Article Google Scholar
H. Ishikawa, T. Osono and H. Takeda, Effects of clear-cutting on decomposition processes in leaf litter and the nitrogen and lignin dynamics in a temperate secondary forest, J. Forest Res., 2007, 12, 247–254. ArticleCAS Google Scholar
H. L. Throop and S. R. Archer, Interrelationships among shrub encroachment, land management, and litter decomposition in a semidesert grassland, Ecol. Appl., 2007, 17, 1809–1823. ArticlePubMed Google Scholar
C. K. McCalley and J. P. Sparks, Abiotic Gas Formation Drives Nitrogen Loss from a Desert Ecosystem, Science, 2009, 326, 837–840. ArticleCASPubMed Google Scholar
F. S. Chapin, J. T. Randerson, A. D. McGuire, J. A. Foley and C. B. Field, Changing feedbacks in the climate-biosphere system, Front. Ecol. Environ., 2008, 6, 313–320. Article Google Scholar
S. A. Cowling, C. D. Jones and P. M. Cox, Greening the terrestrial biosphere: simulated feedbacks on atmospheric heat and energy circulation, Clim. Dyn., 2008, 32, 287–299. Article Google Scholar
P. M. Cox, P. P. Harris, C. Huntingford, R. A. Betts, M. Collins, C. D. Jones, T. E. Jupp, J. A. Marengo and C. A. Nobre, Increasing risk of Amazonian drought due to decreasing aerosol pollution, Nature, 2008, 453, 212–U217. ArticleCASPubMed Google Scholar
Y. Q. Luo, D. Gerten, G. Le Maire, W. J. Parton, E. S. Weng, X. H. Zhou, C. Keough, C. Beier, P. Ciais, W. Cramer, J. S. Dukes, B. Emmett, P. J. Hanson, A. Knapp, S. Linder, D. Nepstad and L. Rustad, Modeled interactive effects of precipitation, temperature, and [CO2] on ecosystem carbon and water dynamics in different climatic zones, Global Change Biol., 2008, 14, 1986–1999. Article Google Scholar
A. Schmittner, A. Oschlies, H. D. Matthews and E. D. Galbraith, Future changes in climate, ocean circulation, ecosystems, and bio-geochemical cycling simulated for a business-as-usual CO2 emission scenario until year 4000 AD, Global Biogeochem. Cycles, 2008, 22, GB1013. ArticleCAS Google Scholar
J. Beardall, C. Sobrino and S. Stojkovic, Interactions between the impacts of ultraviolet radiation, elevated CO2, and nutrient limitation on marine primary producers, Photochem. Photobiol. Sci., 2009, 8, 1257–1265. ArticleCASPubMed Google Scholar
J. J. Fritz, P. J. Neale, R. F. Davis and J. A. Peloquin, Response of Antarctic phytoplankton to solar UVR exposure: inhibition and recovery of photosynthesis in coastal and pelagic assemblages, Mar. Ecol.: Prog. Ser., 2008, 365, 1–16. ArticleCAS Google Scholar
D.-P. Häder, H. D. Kumar, R. C. Smith and R. C. Worrest, Effects of solar UV radiation on aquatic ecosystems and interactions with climate change, Photochem. Photobiol. Sci., 2007, 6, 267–285. ArticlePubMed Google Scholar
E. Leu, S. Falk-Petersen and D. O. Hessen, Ultraviolet radiation negatively affects growth but not food quality of artic diatoms, Limnol. Oceanogr., 2007, 52, 787–797. ArticleCAS Google Scholar
J. A. Meador, A. J. Baldwin, P. Catala, W. H. Jeffrey, F. Joux, J. A. Moss, J. D. Pakulski, R. Stevens and D. L. Mitchell, Sunlight-induced DNA Damage in Marine Micro-organisms Collected Along a Latitudinal Gradient from 70 degrees N to 68 degrees S, Photochem. Photobiol., 2009, 85, 412–421. ArticleCASPubMed Google Scholar
C. Sobrino, M. L. Ward and P. J. Neale, Acclimation to elevated carbon dioxide and ultraviolet radiation in the diatom Thalassiosira pseudonana: Effects on growth, photosynthesis, and spectral sensitivity of photoinhibition, Limnol. Oceanogr., 2008, 53, 494–505. ArticleCAS Google Scholar
R. G. Zepp, G. C. Shank, E. Stabenau, K. W. Patterson, M. Cyterski, W. Fisher, E. Bartels and S. L. Anderson, Spatial and temporal variability of solar ultraviolet exposure of coral assemblages in the Florida Keys: Importance of colored dissolved organic matter, Limnol. Oceanogr., 2008, 53, 1909–1922. ArticleCAS Google Scholar
C. E. Williamson, H. J. De Lange and D. M. Leech, Do zooplankton contribute to an ultraviolet clear-water phase in lakes?, Limnol. Oceanogr., 2007, 52, 662–667. ArticleCAS Google Scholar
C. M. Swan, D. A. Siegel, N. B. Nelson, C. A. Carlson and E. Nasir, Biogeochemical and hydrographic controls on chromophoric dissolved organic matter distribution in the Pacific Ocean, Deep-Sea Res., Part I, 2009, 56, 2175–2192. ArticleCAS Google Scholar
Z. Chen, C. Hu, R. N. Conmy, F. Muller-Karger and P. Swarzenski, Colored dissolved organic matter in Tampa Bay, Florida, Mar. Chem., 2007, 104, 98–109. ArticleCAS Google Scholar
C. D. Clark, L. P. Litz and S. B. Grant, Salt marshes as a source of chromophoric dissolved organic matter (CDOM) to Southern California coastal waters, Limnol. Oceanogr., 2008, 53, 1923–1933. ArticleCAS Google Scholar
B. J. Dalzell, E. C. Minor and K. M. Mopper, Photodegradation of estuarine dissolved organic matter: a multi-method assessment of DOM transformation, Org. Geochem., 2009, 40, 243–257. ArticleCAS Google Scholar
E. J. D’Sa and S. F. DiMarco, Seasonal variability and controls on chromophoric dissolved organic matter in a large river-dominated coastal margin, Limnol. Oceanogr., 2009, 54, 2233–2242. Article Google Scholar
J. E. Grebel, J. J. Pignatello, W. H. Song, W. J. Cooper and W. A. Mitch, Impact of halides on the photobleaching of dissolved organic matter, Mar. Chem., 2009, 115, 134–144. ArticleCAS Google Scholar
K. H. Hefner, J. M. Fisher and J. L. Ferry, A multifactor exploration of the photobleaching of Suwannee River dissolved organic matter across the freshwater/saltwater interface, Environ. Sci. Technol., 2006, 40, 3717–3722. ArticleCASPubMed Google Scholar
J. R. Helms, A. Stubbins, J. D. Ritchie, E. C. Minor, D. J. Kieber and K. Mopper, Absorption spectral slopes and slope ratios as indicators of molecular weight, source, and photobleaching of chromophoric dissolved organic matter, Limnol. Oceanogr., 2008, 53, 955–969. Article Google Scholar
E. C. Minor, B. J. Dalzell, A. Stubbins and K. Mopper, Evaluating the photoalteration of estuarine dissolved organic matter using direct temperature-resolved mass spectrometry and UV-visible spectroscopy, Aquat. Sci., 2007, 69, 440–455. ArticleCAS Google Scholar
E. C. Minor, J. Pothen, B. J. Dalzell, H. Abdulla and K. Mopper, Effects of salinity changes on the photodegradation and ultraviolet-visible absorbance of terrestrial dissolved organic matter, Limnol. Oceanogr., 2006, 51, 2181–2186. ArticleCAS Google Scholar
C. L. Osburn, L. Retamal and W. F. Vincent, Photoreactivity of chromophoric dissolved organic matter transported by the Mackenzie River to the Beaufort Sea, Mar. Chem., 2009, 115, 10–20. ArticleCAS Google Scholar
C. Piccini, D. Conde, J. Pernthaler and R. Sommaruga, Alteration of chromophoric dissolved organic matter by solar UV radiation causes rapid changes in bacterial community composition, Photochem. Photobiol. Sci., 2009, 8, 1321–1328. ArticleCASPubMedPubMed Central Google Scholar
U. F. Rodriguez-Zuniga, D. Milori, W. T. L. Da Silva, L. Martin-Neto, L. C. Oliveira and J. C. Rocha, Changes in optical properties caused by UV-irradiation of aquatic humic substances from the amazon river basin: Seasonal variability evaluation, Environ. Sci. Technol., 2008, 42, 1948–1953. ArticleCASPubMed Google Scholar
G. C. Shank, K. Nelson and P. A. Montagna, Importance of CDOM distribution and photoreactivity in a shallow Texas estuary, Estuaries Coasts, 2009, 32, 661–677. ArticleCAS Google Scholar
A. V. Vähätalo and R. G. Wetzel, Long-term photochemical and microbial decomposition of wetland-derived dissolved organic matter with alteration of C13:C12 mass ratio, Limnol. Oceanogr., 2008, 53, 1387–1392. Article Google Scholar
Y. L. Zhang, M. L. Liu, B. Q. Qin and S. Feng, Photochemical degradation of chromophoric-dissolved organic matter exposed to simulated UV-B and natural solar radiation, Hydrobiologia, 2009, 627, 159–168. ArticleCAS Google Scholar
N. B. Nelson, D. A. Siegel, C. A. Carlson and C. M. Swan, Tracing global biogeochemical cycles and meridional overturning circulation using chromophoric dissolved organic matter, Geophys. Res. Lett., 2010, 37, L03610. ArticleCAS Google Scholar
M. J. Behrenfeld, R. T. O’Malley, D. A. Siegel, C. R. McClain, J. L. Sarmiento, G. C. Feldman, A. J. Milligan, P. G. Falkowski, R. M. Letelier and E. S. Boss, Climate-driven trends in contemporary ocean productivity, Nature, 2006, 444, 752–755. ArticleCASPubMed Google Scholar
M. J. Behrenfeld, T. K. Westberry, E. S. Boss, R. T. O’Malley, D. A. Siegel, J. D. Wiggert, B. A. Franz, C. R. McClain, G. C. Feldman, S. C. Doney, J. K. Moore, G. Dall’Olmo, A. J. Milligan, I. Lima and N. Mahowald, Satellite-detected fluorescence reveals global physiology of ocean phytoplankton, Biogeosciences, 2009, 6, 779–794. Article Google Scholar
D. G. Boyce, M. R. Lewis and B. Worm, Global phytoplankton decline over the past century, Nature, 2010, 466, 591–596. ArticleCASPubMed Google Scholar
W. K. W. Li and W. G. Harrison, Propagation of an atmospheric climate signal to phytoplankton in a small marine basin, Limnol. Oceanogr., 2008, 53, 1734–1745. Article Google Scholar
A. T. Banaszak and M. P. Lesser, Effects of solar ultraviolet radiation on coral reef organisms, Photochem. Photobiol. Sci., 2009, 8, 1276–1294. ArticleCASPubMed Google Scholar
X. A. G. Moran, M. Sebastian, C. Pedros-Alio and M. Estrada, Response of Southern Ocean phytoplankton and bacterioplankton production to short-term experimental warming, Limnol. Oceanogr., 2006, 51, 1791–1800. ArticleCAS Google Scholar
N. R. Bates and A. J. Peters, The contribution of atmospheric acid deposition to ocean acidification in the subtropical North Atlantic Ocean, Mar. Chem., 2007, 107, 547–558. ArticleCAS Google Scholar
R. E. Zeebe, J. C. Zachos, K. Caldeira and T. Tyrrell, Oceans - Carbon emissions and acidification, Science, 2008, 321, 51–52. ArticleCASPubMed Google Scholar
G. De’ath, J. M. Lough and K. E. Fabricius, Declining coral calcification on the Great Barrier Reef, Science, 2009, 323, 116–119. ArticlePubMedCAS Google Scholar
V. J. Fabry, B. A. Seibel, R. A. Feely and J. C. Orr, Impacts of ocean acidification on marine fauna and ecosystem processes, ICES J. Mar. Sci., 2008, 65, 414–432. ArticleCAS Google Scholar
R. A. Feely, C. L. Sabine, J. M. Hernandez-Ayon, D. Ianson and B. Hales, Evidence for upwelling of corrosive “acidified” water onto the continental shelf, Science, 2008, 320, 1490–1492. ArticleCASPubMed Google Scholar
K. S. Gao, Z. X. Ruan, V. E. Villafane, J. P. Gattuso and E. W. Helbling, Ocean acidification exacerbates the effect of UV radiation on the calcifying phytoplankter Emiliania huxleyi, Limnol. Oceanogr., 2009, 54, 1855–1862. ArticleCAS Google Scholar
J. M. Hall-Spencer, R. Rodolfo-Metalpa, S. Martin, E. Ransome, M. Fine, S. M. Turner, S. J. Rowley, D. Tedesco and M. C. Buia, Volcanic carbon dioxide vents show ecosystem effects of ocean acidification, Nature, 2008, 454, 96–99. ArticleCASPubMed Google Scholar
O. Hoegh-Guldberg, P. J. Mumby, A. J. Hooten, R. S. Steneck, P. Greenfield, E. Gomez, C. D. Harvell, P. F. Sale, A. J. Edwards, K. Caldeira, N. Knowlton, C. M. Eakin, R. Iglesias-Prieto, N. Muthiga, R. H. Bradbury, A. Dubi and M. E. Hatziolos, Coral reefs under rapid climate change and ocean acidification, Science, 2007, 318, 1737–1742. ArticleCASPubMed Google Scholar
K. R. N. Anthony and A. P. Kerswell, Coral mortality following extreme low tides and high solar radiation, Mar. Biol., 2007, 151, 1623–1631. Article Google Scholar
K. E. Carpenter, M. Abrar, G. Aeby, R. B. Aronson, S. Banks, A. Bruckner, A. Chiriboga, J. Cortes, J. C. Delbeek, L. DeVantier, G. J. Edgar, A. J. Edwards, D. Fenner, H. M. Guzman, B. W. Hoeksema, G. Hodgson, O. Johan, W. Y. Licuanan, S. R. Livingstone, E. R. Lovell, J. A. Moore, D. O. Obura, D. Ochavillo, B. A. Polidoro, W. F. Precht, M. C. Quibilan, C. Reboton, Z. T. Richards, A. D. Rogers, J. Sanciangco, A. Sheppard, C. Sheppard, J. Smith, S. Stuart, E. Turak, J. E. N. Veron, C. Wallace, E. Weil and E. Wood, One-third of reef-building corals face elevated extinction risk from climate change and local impacts,, Science, 2008, 321, 560–563. ArticleCASPubMed Google Scholar
A. Rodriguez-Roman, X. Hernandez-Pech, P. E. Thome, S. Enriquez and R. Iglesias-Prieto, Photosynthesis and light utilization in the Caribbean coral Montastraea faveolata recovering from a bleaching event, Limnol. Oceanogr., 2006, 51, 2702–2710. Article Google Scholar
C. Ferrier-Pages, C. Richard, D. Forcioli, D. Allemand, M. Pichon and J. M. Shick, Effects of temperature and UV radiation increases on the photosynthetic efficiency in four scleractinian coral species, Biol. Bull., 2007, 213, 76–87. ArticlePubMed Google Scholar
S. C. Doney, W. M. Balch, V. J. Fabry and R. A. Feely, Ocean acidification: A critical emerging problem for the ocean sciences, Oceanography, 2009, 22, 16. Article Google Scholar
S. C. Doney, V. J. Fabry, R. A. Feely and J. A. Kleypas, Ocean acidification: The other CO2 problem, Annu. Rev. Mar. Sci., 2009, 1, 169–192. Article Google Scholar
M. Steinacher, F. Joos, T. L. Frolicher, G. K. Plattner and S. C. Doney, Imminent ocean acidification in the Arctic projected with the NCAR global coupled carbon cycle-climate model, Biogeosciences, 2009, 6, 515–533. ArticleCAS Google Scholar
D. L. Shi, Y. Xu, B. M. Hopkinson and F. M. M. Morel, Effect of ocean acidification on iron availability to marine phytoplankton, Science, 2010, 327, 676–679. ArticleCASPubMed Google Scholar
N. S. Lovenduski, N. Gruber and S. C. Doney, Toward a mechanistic understanding of the decadal trends in the Southern Ocean carbon sink, Global Biogeochem. Cycles, 2008, 22, 9. ArticleCAS Google Scholar
R. P. Allan and B. J. Soden, Atmospheric warming and the amplification of precipitation extremes, Science, 2008, 321, 1481–1484. ArticleCASPubMed Google Scholar
A. Agren, M. Jansson, H. Ivarsson, K. Bishop and J. Seibert, Seasonal and runoff-related changes in total organic carbon concentrations in the River Ore, Northern Sweden, Aquat. Sci., 2007, 70, 21–29. ArticleCAS Google Scholar
A. Baker, L. Bolton, M. Newson and R. G. M. Spencer, Spectropho-tometric properties of surface water dissolved organic matter in an afforested upland peat catchment, Hydrol. Processes, 2008, 22, 2325–2336. ArticleCAS Google Scholar
M. Gonsior, B. M. Peake, W. T. Cooper, D. Podgorski, J. D’Andrilli and W. J. Cooper, Photochemically induced changes in dissolved organic matter identified by ultrahigh resolution Fourier transform ion cyclotron resonance mass spectrometry, Environ. Sci. Technol., 2009, 43, 698–703. ArticleCASPubMed Google Scholar
P. J. Hernes, R. G. M. Spencer, R. Y. Dyda, B. A. Pellerin, P. A. M. Bachand and B. A. Bergamaschi, The role of hydrologic regimes on dissolved organic carbon composition in an agricultural watershed, Geochim. Cosmochim. Acta, 2008, 72, 5266–5277. ArticleCAS Google Scholar
A. Lepisto, P. Kortelainen and T. Mattsson, Increased organic C and N leaching in a northern boreal river basin in Finland, Global Biogeochem. Cycles, 2008, 22, GB3029. ArticleCAS Google Scholar
B. E. van Dongen, Z. Zencak and Ö. Gustafsson, Differential transport and degradation of bulk organic carbon and specific terrestrial biomarkers in the surface waters of a sub-arctic brackish bay mixing zone, Mar. Chem., 2008, 112, 203–314. ArticleCAS Google Scholar
T. N. Wiegner, R. L. Tubal and R. A. MacKenzie, Bioavailability and export of dissolved organic matter from a tropical river during base-and -stormflow conditions, Limnol. Oceanogr., 2009, 54, 1233–1242. ArticleCAS Google Scholar
P. Kowalczuk, M. J. Durako, H. Young, A. E. Kahn, W. J. Cooper and M. Gonsior, Characterization of dissolved organic matter fluorescence in the South Atlantic Bight with use of PARAFAC model: Interannual variability, Mar. Chem., 2009, 113, 182–196. ArticleCAS Google Scholar
R. G. M. Spencer, G. R. Aiken, K. D. Butler, M. M. Dornblaser, R. G. Striegl and P. J. Hernes, Utilizing chromophoric dissolved organic matter measurements to derive export and reactivity of dissolved organic carbon exported to the Arctic Ocean: A case study of the Yukon River, Alaska, Geophys. Res. Lett., 2009, 36, L06401. ArticleCAS Google Scholar
J. E. Vonk, B. E. van Dongen and Ö. Gustafsson, Lipid biomarker investigation of the origin and diagenetic state of sub-arctic terrestrial organic matter presently exported into the northern Bothnian Bay, Mar. Chem., 2008, 112, 1–10. ArticleCAS Google Scholar
E. J. Biers, R. G. Zepp and M. A. Moran, The role of nitrogen in chromophoric and fluorescent dissolved organic matter formation, Mar. Chem., 2007, 103, 46–60. ArticleCAS Google Scholar
M. Gonsior, B. Peake, W. Cooper, R. Jaffe, H. Young, A. Kahn and P. Kowalczuk, Spectral characterization of chromophoric dissolved organic matter (CDOM) in a fjord (Doubtful Sound, New Zealand), Aquat. Sci., 2008, 70, 397–409. ArticleCAS Google Scholar
K. E. Judd, B. C. Crump and G. W. Kling, Bacterial responses in activity and community composition to photo-oxidation of dissolved organic matter from soil and surface waters, Aquat. Sci., 2007, 69, 96–107. ArticleCAS Google Scholar
C. L. Osburn, D. W. O’Sullivan and T. J. Boyd, Increases in the longwave photobleaching of chromophoric dissolved organic matter in coastal waters, Limnol. Oceanogr., 2009, 54, 145–159. Article Google Scholar
A. Stubbins, V. Hubbard, G. Uher, C. S. Law, R. C. Upstill-Goddard, G. R. Aiken and K. Mopper, Relating carbon monoxide photoproduction to dissolved organic matter functionality, Environ. Sci. Technol., 2008, 42, 3271–3276. ArticleCASPubMed Google Scholar
B. Sulzberger and E. Durisch-Kaiser, Chemical characterization of dissolved organic matter (DOM): A prerequisite for understanding UV-induced changes of DOM absorption properties and bioavailabil-ity, Aquat. Sci., 2009, 71, 104–126. ArticleCAS Google Scholar
M. Tzortziou, P. J. Neale, C. L. Osburn, J. P. Megonigal, N. Maie and R. Jaffe, Tidal marshes as a source of optically and chemically distinctive colored dissolved organic matter in the Chesapeake Bay, Limnol. Oceanogr., 2008, 53, 148–159. ArticleCAS Google Scholar
D. Vione, V. Lauri, C. Minero, V. Maurino, M. Malandrino, M. E. Carlotti, R. I. Olariu and C. Arsene, Photostability and photolability of dissolved organic matter upon irradiation of natural water samples under simulated sunlight, Aquat. Sci., 2009, 71, 34–45. ArticleCAS Google Scholar
S. Bélanger, H. X. Xie, N. Krotkov, P. Larouche, W. F. Vincent and M. Babin, Photomineralization of terrigenous dissolved organic matter in Arctic coastal waters from 1979 to 2003: Interannual variability and implications of climate change, Global Biogeochem. Cycles, 2006, 20, GB4005. ArticleCAS Google Scholar
L. M. Mayer, L. L. Schick, T. S. Bianchi and L. A. Wysocki, Photochemical changes in chemical markers of sedimentary organic matter source and age, Mar. Chem., 2009, 113, 123–128. ArticleCAS Google Scholar
H. X. Xie and O. C. Zafiriou, Evidence for significant photochemical production of carbon monoxide by particles in coastal and olig-otrophic marine waters, Geophys. Res. Lett., 2009, 36, 5. Article Google Scholar
O. C. Zafiriou, H. X. Xie, N. B. Nelson, R. G. Najjar and W. Wang, Diel carbon monoxide cycling in the upper Sargasso Sea near Bermuda at the onset of spring and in midsummer, Limnol. Oceanogr., 2008, 53, 835–850. ArticleCAS Google Scholar
L. M. Mayer, L. L. Schick, K. R. Hardy and M. L. Estapa, Photodissolution and other photochemical changes upon irradiation of algal detritus, Limnol. Oceanogr., 2009, 54, 1688–1698. ArticleCAS Google Scholar
J. A. Riggsbee, C. H. Orr, D. M. Leech, M. W. Doyle and R. G. Wetzel, Suspended sediments in river ecosystems: Photochemical sources of dissolved organic carbon, dissolved organic nitrogen, and adsorptive removal of dissolved iron, J. Geophys. Res., 2008, 113, 12. Google Scholar
M. Davey, G. A. Tarran, M. M. Mills, C. Ridame, R. J. Geider and J. LaRoche, Nutrient limitation of picophytoplankton photosynthesis and growth in the tropical North Atlantic, Limnol. Oceanogr., 2008, 53, 1722–1733. ArticleCAS Google Scholar
A. Yool, A. P. Martin, C. Fernandez and D. R. Clark, The significance of nitrification for oceanic new production, Nature, 2007, 447, 999–1002. ArticleCASPubMed Google Scholar
T. H. DeLuca, M. C. Nilsson and O. Zackrisson, Nitrogen mineralization and phenol accumulation along a fire chronosequence in northern Sweden, Oecologia, 2002, 133, 206–214. ArticleCASPubMed Google Scholar
T. H. DeLuca, O. Zackrisson, M. J. Gundale and M. C. Nilsson, Ecosystem feedbacks and nitrogen fixation in boreal forests, Science, 2008, 320, 1181–1181. ArticleCASPubMed Google Scholar
J. N. Galloway, A. R. Townsend, J. W. Erisman, M. Bekunda, Z. C. Cai, J. R. Freney, L. A. Martinelli, S. P. Seitzinger and M. A. Sutton, Transformation of the nitrogen cycle: Recent trends, questions, and potential solutions, Science, 2008, 320, 889–892. ArticleCASPubMed Google Scholar
R. A. Duce, J. LaRoche, K. Altieri, K. R. Arrigo, A. R. Baker, D. G. Capone, S. Cornell, F. Dentener, J. Galloway, R. S. Ganeshram, R. J. Geider, T. Jickells, M. M. Kuypers, R. Langlois, P. S. Liss, S. M. Liu, J. J. Middelburg, C. M. Moore, S. Nickovic, A. Oschlies, T. Pedersen, J. Prospero, R. Schlitzer, S. Seitzinger, L. L. Sorensen, M. Uematsu, O. Ulloa, M. Voss, B. Ward and L. Zamora, Impacts of atmospheric anthropogenic nitrogen on the open ocean, Science, 2008, 320, 893–897. ArticleCASPubMed Google Scholar
A. Davies, A. E. S. Kemp and J. Pike, Late Cretaceous seasonal ocean variability from the Arctic, Nature, 2009, 460, 254–U118. ArticleCASPubMed Google Scholar
C. Deutsch, J. L. Sarmiento, D. M. Sigman, N. Gruber and J. P. Dunne, Spatial coupling of nitrogen inputs and losses in the ocean, Nature, 2007, 445, 163–167. ArticleCASPubMed Google Scholar
J. K. Moore and S. C. Doney, Iron availability limits the ocean nitrogen inventory stabilizing feedbacks between marine denitrification and nitrogen fixation, Global Biogeochem. Cycles, 2007, 21, GB2001. ArticleCAS Google Scholar
R. J. Kieber, N. E. Parler, S. A. Skrabal and J. D. Willey, Speciation and photochemistry of mercury in rainwater, J. Atmos. Chem., 2008, 60, 153–168. ArticleCAS Google Scholar
D. J. Beerling, C. N. Hewitt, J. A. Pyle and J. A. Raven, Critical issues in trace gas biogeochemistry and global change, Philos. Trans. R. Soc. London, Ser. A, 2007, 365, 1629–1642. CAS Google Scholar
J. D. Willey, R. J. Kieber, P. J. Seaton and C. Miller, Rainwater as a source of Fe(II)-stabilizing ligands to seawater, Limnol. Oceanogr., 2008, 53, 1678–1684. ArticleCAS Google Scholar
F. M. M. Morel, A. B. Kustka and Y. Shaked, The role of unchelated Fe in the iron nutrition of phytoplankton, Limnol. Oceanogr., 2008, 53, 400–404. ArticleCAS Google Scholar
P. Borer, B. Sulzberger, S. J. Hug, S. M. Kraemer and R. Kretzschmar, Photoreductive Dissolution of Iron(III) (Hydr)oxides in the Absence and Presence of Organic ligands: Experimental Studies and Kinetic Modeling, Environ. Sci. Technol., 2009, 43, 1864–1870. ArticleCASPubMed Google Scholar
M. Fujii, A. L. Rose, T. D. Waite and T. Omura, Superoxide-mediated dissolution of amorphous ferric oxyhydroxide in seawater, Environ. Sci. Technol., 2006, 40, 880–887. ArticleCASPubMed Google Scholar
K. Barbeau, Photochemistry of organic iron(III) complexing ligands in oceanic systems, Photochem. Photobiol., 2006, 82, 1505–1516. ArticleCASPubMed Google Scholar
S. M. Fan, Photochemical and biochemical controls on reactive oxygen and iron speciation in the pelagic surface ocean, Mar. Chem., 2008, 109, 152–164. ArticleCAS Google Scholar
N. Kelton, L. A. Molot and P. J. Dillon, Effect of ultraviolet and visible radiation on iron lability in boreal and artificial waters, Aquat. Sci., 2007, 69, 86–95. ArticleCAS Google Scholar
L. A. Brandt, J. Y. King and D. G. Milchunas, Effects of ultraviolet radiation on litter decomposition depend on precipitation and litter chemistry in a shortgrass steppe ecosystem, Global Change Biol., 2007, 13, 2193–2205. Article Google Scholar
W. K. Smith, W. Gao, H. Steltzer, M. D. Wallenstein and R. Tree, Moisture availability influences the effect of ultraviolet-B radiation on leaf litter decomposition, Global Change Biol., 2010, 16, 484–495. Article Google Scholar
L. Brandt, J. King, S. Hobbie, D. Milchunas and R. Sinsabaugh, The role of photodegradation in surface litter decomposition across a grassland ecosystem precipitation gradient, Ecosystems, 2010, 13, 765–781. ArticleCAS Google Scholar
W. Parton, W. L. Silver, I. C. Burke, L. Grassens, M. E. Harmon, W. S. Currie, J. Y. King, E. C. Adair, L. A. Brandt, S. C. Hart and B. Fasth, Global-scale similarities in nitrogen release patterns during long-term decomposition, Sci. Technol., 2007, 315, 361–364. CAS Google Scholar
A. T. Austin and C. L. Ballaré, Dual role of lignin in plant litter decomposition in terrestrial ecosystems, Proc. Natl. Acad. Sci. U. S. A., 2010, 107, 4618–4622. ArticleCASPubMedPubMed Central Google Scholar
A. V. Vähätalo and M. Jarvinen, Photochemically produced bioavail-able nitrogen from biologically recalcitrant dissolved organic matter stimulates production of a nitrogen-limited microbial food web in the Baltic Sea, Limnol. Oceanogr., 2007, 52, 132–143. Article Google Scholar
L. Loulergue, A. Schilt, R. Spahni, V. Masson-Delmotte, T. Blunier, B. Lemieux, J. M. Barnola, D. Raynaud, T. F. Stocker and J. Chappellaz, Orbital and millennial-scale features of atmospheric CH4 over the past 800, 000 years, Nature, 2008, 453, 383–386. ArticleCASPubMed Google Scholar
P. Bergamaschi, C. Frankenberg, J. F. Meirink, M. Krol, F. Dentener, T. Wagner, U. Platt, J. O. Kaplan, S. Korner, M. Heimann, E. J. Dlugokencky and A. Goede, Satellite chartography of atmospheric methane from SCIAMACHY on board ENVISAT: 2. Evaluation based on inverse model simulations, J. Geophys. Res., 2007, 112, D02304. Google Scholar
J. B. do Carmo, M. Keller, J. D. Dias, P. B. de Camargo and P. Crill, A source of methane from upland forests in the Brazilian Amazon, Geophys. Res. Lett., 2006, 33, L04809. ArticleCAS Google Scholar
J. B. Miller, L. V. Gatti, M. T. S. d’Amelio, A. M. Crotwell, E. J. Dlugokencky, P. Bakwin, P. Artaxo and P. P. Tans, Airborne measurements indicate large methane emissions from the eastern Amazon basin, Geophys. Res. Lett., 2007, 34, L10809. ArticleCAS Google Scholar
F. Keppler, J. T. G. Hamilton, M. Brass and T. Rockmann, Methane emissions from terrestrial plants under aerobic conditions, Nature, 2006, 439, 187–191. ArticleCASPubMed Google Scholar
R. Niemi, P. J. Martikainen, J. Silvola, A. Wulff, S. Turtola and T. Holopainen, Elevated UV-B radiation alters fluxes of methane and carbon dioxide in peatland microcosms, Global Change Biol., 2002, 8, 361–371. Article Google Scholar
S. Feil, Plants surprise as methane producers, Chem. Unserer Zeit, 2006, 40, 158–158. Article Google Scholar
S. Houweling, T. Rockmann, I. Aben, F. Keppler, M. Krol, J. F. Meirink, E. J. Dlugokencky and C. Frankenberg, Atmospheric constraints on global emissions of methane from plants, Geophys. Res. Lett., 2006, 33, L15821. ArticleCAS Google Scholar
D. F. Ferretti, J. B. Miller, J. W. C. White, K. R. Lassey, D. C. Lowe and D. M. Etheridge, Stable isotopes provide revised global limits of aerobic methane emissions from plants, Atmos. Chem. Phys., 2007, 7, 237–241. ArticleCAS Google Scholar
M. U. F. Kirschbaum, D. Bruhn, D. M. Etheridge, J. R. Evans, G. D. Farquhar, R. M. Gifford, K. I. Paul and A. J. Winters, A comment on the quantitative significance of aerobic methane release by plants, Funct. Plant Biol., 2006, 33, 521–530. ArticleCASPubMed Google Scholar
E. Sanhueza, Methane soil-vegetation-atmosphere fluxes in tropical ecosystems, Interciencia, 2007, 32, 30–34. Google Scholar
V. A. Sharpatyi, On the mechanism of methane emission by terrestrial plants, Oxid. Commun., 2007, 30, 48–50. CAS Google Scholar
T. A. Dueck, R. de Visser, H. Poorter, S. Persijn, A. Gorissen, W. de Visser, A. Schapendonk, J. Verhagen, J. Snel, F. J. M. Harren, A. K. Y. Ngai, F. Verstappen, H. Bouwmeester, L. Voesenek and A. von der Werf, No evidence for substantial aerobic methane emission by terrestrial plants: a C13-labelling approach, New Phytol., 2007, 175, 29–35. ArticleCASPubMed Google Scholar
F. Keppler, J. T. G. Hamilton, W. C. McRoberts, I. Vigano, M. Brass and T. Rockmann, Methoxyl groups of plant pectin as a precursor of atmospheric methane: evidence from deuterium labelling studies, New Phytol., 2008, 178, 808–814. ArticleCASPubMed Google Scholar
D. J. Messenger, A. R. McLeod and S. C. Fry, The role of ultraviolet radiation, photosensitizers, reactive oxygen species and ester groups in mechanisms of methane formation from pectin, Plant, Cell Environ., 2009, 32, 1–9. ArticleCAS Google Scholar
J. M. Melillo, J. M. Reilly, D. W. Kicklighter, A. C. Gurgel, T. W. Cronin, S. Paltsev, B. S. Felzer, X. D. Wang, A. P. Sokolov and C. A. Schlosser, Indirect Emissions from Biofuels: How Important?, Science, 2009, 326, 1397–1399. ArticleCASPubMed Google Scholar
D. R. Bowling, J. B. Miller, M. E. Rhodes, S. P. Burns, R. K. Monson and D. Baer, Soil, plant, and transport influences on methane in a subalpine forest under high ultraviolet irradiance, Biogeosciences, 2009, 6, 1311–1324. ArticleCAS Google Scholar
G. M. Cao, X. L. Xu, R. J. Long, Q. L. Wang, C. T. Wang, Y. G. Du and X. Q. Zhao, Methane emissions by alpine plant communities in the Qinghai-Tibet Plateau, Biol. Lett., 2008, 4, 681–684. ArticleCASPubMedPubMed Central Google Scholar
R. E. R. Nisbet, R. Fisher, R. H. Nimmo, D. S. Bendall, P. M. Crill, A. V. Gallego-Sala, E. R. C. Hornibrook, E. Lopez-Juez, D. Lowry, P. B. R. Nisbet, E. F. Shuckburgh, S. Sriskantharajah, C. J. Howe and E. G. Nisbet, Emission of methane from plants, Proc. R. Soc. London, Ser. B, 2009, 276, 1347–1354. CAS Google Scholar
A. A. Bloom, J. Lee-Taylor, S. Madronich, D. J. Messenger, P. I. Palmer, D. S. Reay and A. R. McLeod, Global methane emission estimates from ultraviolet irradiation of terrestrial plant foliage, New Phytol., 2010, 187, 417–425. ArticleCASPubMed Google Scholar
A. R. McLeod, S. C. Fry, G. J. Loake, D. J. Messenger, D. S. Reay, K. A. Smith and B. W. Yun, Ultraviolet radiation drives methane emissions from terrestrial plant pectins, New Phytol., 2008, 180, 124–132. ArticleCASPubMed Google Scholar
X. Tang, S. R. Wilson, K. R. Solomon, M. Shao and S. Madoronich, Changes in air quality and tropospheric composition due to depletion of stratospheric ozone and interactions with climate, Photochem. Photobiol. Sci., 2011, 10, DOI: 10.1039/c0pp90039g.
D. T. Shindell, G. Faluvegi, D. M. Koch, G. A. Schmidt, N. Unger and S. E. Bauer, Improved attribution of climate forcing to emissions, Science, 2009, 326, 716–718. ArticleCASPubMed Google Scholar
V. Gros, I. Peeken, K. Bluhm, E. Zollner, R. Sarda-Esteve and B. Bonsang, Carbon monoxide emissions by phytoplankton: evi dence from laboratory experiments, Environ. Chem., 2009, 6, 369–379. ArticleCAS Google Scholar
M. A. Moran and W. L. Miller, Resourceful heterotrophs make the most of light in the coastal ocean, Nat. Rev. Microbiol., 2007, 5, 792–800. ArticleCASPubMed Google Scholar
A. Stubbins, G. Uher, C. S. Law, K. Mopper, C. Robinson and R. C. Upstill-Goddard, Open-ocean carbon monoxide photoproduction, Deep-Sea Res., Part II, 2006, 53, 1695–1705. Article Google Scholar
A. Stubbins, G. Uhera, V. Kitidis, C. S. Law, R. C. Upstill-Goddard and E. M. S. Woodward, The open-ocean source of atmospheric carbon monoxide, Deep-Sea Res., Part II, 2006, 53, 1685–1694. Article Google Scholar
H. X. Xie, S. Belanger, S. Demers, W. F. Vincent and T. N. Papakyriakou, Photobiogeochemical cycling of carbon monoxide in the southeastern Beaufort Sea in spring and autumn, Limnol. Oceanogr., 2009, 54, 234–249. ArticleCAS Google Scholar
J. D. Tolli and C. D. Taylor, Biological CO oxidation in the Sargasso Sea and in Vineyard Sound, Massachusetts, Limnol. Oceanogr., 2005, 50, 1205–1212. ArticleCAS Google Scholar
P. Hari, M. Raivonen, T. Vesala, J. W. Munger, K. Pilegaard and M. Kulmala, Atmospheric science - Ultraviolet light and leaf emission of NOx, Nature, 2003, 422, 134–134. ArticleCASPubMed Google Scholar
J. P. Sparks, Ecological ramifications of the direct foliar uptake of nitrogen, Oecologia, 2008, 159, 1–13. ArticlePubMed Google Scholar
M. Raivonen, B. Bonn, M. J. Sanz, T. Vesala, M. Kulmala and P. Hari, UV-induced NOy emissions from Scots pine: Could they originate from photolysis of deposited HNO3, Atmos. Environ., 2006, 40, 6201–6213. ArticleCAS Google Scholar
M. Raivonen, T. Vesala, L. Pirjola, N. Altimir, P. Keronen, M. Kulmala and P. Hari, Compensation point of NOx exchange: Net result of NOx consumption and production, Agric. Forest Meteorol., 2009, 149, 1073–1081. Article Google Scholar
P. J. Crutzen, A. R. Mosier, K. A. Smith and W. Winiwarter, N2O release from agro-biofuel production negates global warming reduction by replacing fossil fuels, Atmos. Chem. Phys., 2008, 8, 389–395. ArticleCAS Google Scholar
S. Gebhardt, A. Colomb, R. Hofmann, J. Williams and J. Lelieveld, Halogenated organic species over the tropical South American rainforest, Atmos. Chem. Phys., 2008, 8, 3185–3197. ArticleCAS Google Scholar
J. Drewer, K. V. Heal, K. A. Smith and M. R. Heal, Methyl bromide emissions to the atmosphere from temperate woodland ecosystems, Global Change Biol., 2008, 14, 2539–2547. Article Google Scholar
Y. A. Teh, O. Mazeas, A. R. Atwood, T. Abel and R. C. Rhew, Hydrologic regulation of gross methyl chloride and methyl bromide uptake from Alaskan Arctic tundra, Global Change Biol., 2009, 15, 330–345. Article Google Scholar
J. Drewer, M. R. Heal, K. V. Heal and K. A. Smith, Temporal and spatial variation in methyl bromide flux from a salt marsh, Geophys. Res. Lett., 2006, 33, L16808. Article Google Scholar
S. L. Manley, N. Y. Wang, M. L. Walser and R. J. Cicerone, Coastal salt marshes as global methyl halide sources from determinations of intrinsic production by marsh plants, Global Biogeochem. Cycles, 2006, 20, GB3015. ArticleCAS Google Scholar
R. C. Rhew, Y. A. Teh and T. Abel, Methyl halide and methane fluxes in the northern Alaskan coastal tundra, J. Geophys. Res., 2007, 112, G02009. Google Scholar
S. L. Manley, N. Y. Wang, M. L. Walser and R. J. Cicerone, Methyl halide emissions from greenhouse-grown mangroves, Geophys. Res. Lett., 2007, 34, L01806. ArticleCAS Google Scholar
J. X. Wang, R. J. Li, Y. Y. Guo, P. Qin and S. C. Sun, Removal of methyl chloroform in a coastal salt marsh of eastern China, Chemosphere, 2006, 65, 1371–1380. ArticleCASPubMed Google Scholar
J. X. Wang, R. J. Li, Y. Y. Guo, P. Qin and S. C. Sun, The flux of methyl chloride along an elevational gradient of a coastal salt marsh, Eastern China, Atmos. Environ., 2006, 40, 6592–6605. ArticleCAS Google Scholar
T. Ban-nai, Y. Muramatsu and S. Amachi, Rate of iodine volatilization and accumulation by filamentous fungi through laboratory cultures, Chemosphere, 2006, 65, 2216–2222. ArticleCASPubMed Google Scholar
A. Wishkerman, S. Gebhardt, C. W. McRoberts, J. T. G. Hamilton, J. Williams and F. Keppler, Abiotic methyl bromide formation from vegetation, and its strong dependence on temperature, Environ. Sci. Technol., 2008, 42, 6837–6842. ArticleCASPubMed Google Scholar
R. D. French-Monar, J. B. Jones, M. Ozores-Hampton and P. D. Roberts, Survival of inoculum of Phytophthora capsici in soil through time under different soil treatments, Plant Dis., 2007, 91, 593–598. ArticlePubMed Google Scholar
J. S. Gerik, Floriculture production with iodomethane, 1, 3-dichloropropene and chloropicrin as an alternative to methyl bromide, Phytopathology, 2007, 97, S40–S40. Google Scholar
F. Iriarte and E. Rosskopf, Spore viability bioassay, in vitro and greenhouse evaluation of six potential methyl bromide alternatives, Phytopathology, 2007, 97, S50–S50. Google Scholar
E. N. Rosskopf, J. S. Gerik, N. Kokalis-Burelle, G. T. Church and B. McSorley, Status of methyl bromide alternatives for ornamental crop production in Florida and California, Phytopathology, 2007, 97, S101–S101. Google Scholar
J. H. Butler, D. B. King, J. M. Lobert, S. A. Montzka, S. A. Yvon-Lewis, B. D. Hall, N. J. Warwick, D. J. Mondeel, M. Aydin and J. W. Elkins, Oceanic distributions and emissions of short-lived halocarbons, Global Biogeochem. Cycles, 2007, 21, GB1023. Google Scholar
L. J. Carpenter, D. J. Wevill, C. J. Palmer and J. Michels, Depth profiles of volatile iodine and bromine-containing halocarbons in coastal Antarctic waters, Mar. Chem., 2007, 103, 227–236. ArticleCAS Google Scholar
A. Karlsson, N. Auer, D. Schulz-Bull and K. Abrahamsson, Cyanobacterial blooms in the Baltic - A source of halocarbons, Mar. Chem., 2008, 110, 129–139. ArticleCAS Google Scholar
C. J. Palmer and C. J. Reason, Relationships of surface bromoform concentrations with mixed layer depth and salinity in the tropical oceans, Global Biogeochem. Cycles, 2009, 23, 10. ArticleCAS Google Scholar
M. B. Williams, M. Aydin, C. Tatum and E. S. Saltzman, A 2000 year atmospheric history of methyl chloride from a South Pole ice core: Evidence for climate controlled variability, Geophys. Res. Lett., 2007, 34, L07811. Google Scholar
R. M. Moore, A photochemical source of methyl chloride in saline waters, Environ. Sci. Technol., 2008, 42, 1933–1937. ArticleCASPubMed Google Scholar
I. Hense and B. Quack, Modelling the vertical distribution of bromoform in the upper water column of the tropical Atlantic Ocean, Biogeosciences, 2009, 6, 535–544. ArticleCAS Google Scholar
G. Myhre, Consistency between satellite-derived and modeled estimates of the direct aerosol effect, Science, 2009, 325, 187–190. ArticleCASPubMed Google Scholar
D. A. del Valle, D. J. Kieber, D. A. Toole, J. Bisgrove and R. P. Kiene, Dissolved DMSO production via biological and photochemical oxidation of dissolved DMS in the Ross Sea, Antarctica, Deep-Sea Res., Part I, 2009, 56, 166–177. ArticleCAS Google Scholar
W. G. Sunda and D. R. Hardison, Contrasting seasonal patterns in dimethylsulfide, dimethylsulfoniopropionate, and chlorophyll a in a shallow North Carolina estuary and the Sargasso Sea, Aquat. Microb. Ecol., 2008, 53, 281–294. Article Google Scholar
Y. W. Watanabe, H. Yoshinari, A. Sakamoto, Y. Nakano, N. Kasamatsu, T. Midorikawa and T. Ono, Reconstruction of sea surface dimethylsulfide in the North Pacific during 1970 s to 2000s, Mar. Chem., 2007, 103, 347–358. ArticleCAS Google Scholar
A. J. Trevena and G. B. Jones, Dimethylsulfide and dimethylsulfonio-propionate in Antarctic sea ice and their release during sea ice melting, Mar. Chem., 2006, 98, 210–222. ArticleCAS Google Scholar
D. Slezak, K. R. P., D. A. Toole, S. R. and D. J. Kieber, Effects of solar radiation on the fate of dissolved DMSP and conversion to DMS in seawater, Aquat. Sci., 2007, 69, 377–393. ArticleCAS Google Scholar
W. G. Sunda, R. Hardison, R. P. Kiene, E. Bucciarelli and H. Harada, The effect of nitrogen limitation on cellular DMSP and DMS release in marine phytoplankton: Climate feedback implications, Aquat. Sci., 2007, 69, 341–351. ArticleCAS Google Scholar
C. A. Stedmon, S. Markager, L. Tranvik, L. Kronberg, T. Slatis and W. Martinsen, Photochemical production of ammonium and transformation of dissolved organic matter in the Baltic Sea, Mar. Chem., 2007, 104, 227–240. ArticleCAS Google Scholar
D. J. Kieber, D. A. Toole, J. J. Jankowski, R. P. Kiene, G. R. Westby, D. A. del Valle and D. Slezak, Chemical “light meters” for photochemical and photobiological studies, Aquat. Sci., 2007, 69, 360–376. ArticleCAS Google Scholar
T. F. Mentel, J. Wildt, A. Kiendler-Scharr, E. Kleist, R. Tillmann, M. Dal Maso, R. Fisseha, T. Hohaus, H. Spahn, R. Uerlings, R. Wegener, P. T. Griffiths, E. Dinar, Y. Rudich and A. Wahner, Photochemical production of aerosols from real plant emissions, Atmos. Chem. Phys., 2009, 9, 4387–4406. ArticleCAS Google Scholar
J. Laothawornkitkul, J. E. Taylor, N. D. Paul and C. N. Hewitt, Biogenic volatile organic compounds in the Earth system (Vol 183, pg 27, 2009), New Phytol., 2009, 184, 276–276. ArticleCAS Google Scholar
J. D. Blande, K. Turunen and J. K. Holopainen, Pine weevil feeding on Norway spruce bark has a stronger impact on needle VOC emissions than enhanced ultraviolet-B radiation, Environ. Pollut., 2009, 157, 174–180. ArticleCASPubMed Google Scholar
T. R. Winter and M. Rostas, Ambient ultraviolet radiation induces protective responses in soybean but does not attenuate indirect defense, Environ. Pollut., 2008, 155, 290–297. ArticleCASPubMed Google Scholar
P. Tiiva, R. Rinnan, P. Faubert, J. Rasanen, T. Holopainen, E. Kyro and J. K. Holopainen, Isoprene emission from a subarctic peatland under enhanced UV-B radiation, New Phytol., 2007, 176, 346–355. ArticleCASPubMed Google Scholar
S. N. Matsunaga, A. B. Guenther, M. J. Potosnak and E. C. Apel, Emission of sunscreen salicylic esters from desert vegetation and their contribution to aerosol formation, Atmos. Chem. Phys., 2008, 8, 7367–7371. ArticleCAS Google Scholar
E. M. Sunderland, D. P. Krabbenhoft, J. W. Moreau, S. A. Strode and W. M. Landing, Mercury sources, distribution, and bioavailability in the North Pacific Ocean: Insights from data and models, Global Biogeochem. Cycles, 2009, 23, GB2010. ArticleCAS Google Scholar
R. A. Witherow and W. B. Lyons, Mercury deposition in a polar desert ecosystem, Environ. Sci. Technol., 2008, 42, 4710–4716. ArticleCASPubMed Google Scholar
A. P. Dastoor, D. Davignon, N. Theys, M. Van Roozendael, A. Steffen and P. A. Ariya, Modeling dynamic exchange of gaseous elemental mercury at polar sunrise, Environ. Sci. Technol., 2008, 42, 5183–5188. ArticleCASPubMed Google Scholar
L. S. Sherman, J. D. Blum, K. P. Johnson, G. J. Keeler, J. A. Barres and T. A. Douglas, Mass-independent fractionation of mercury isotopes in Arctic snow driven by sunlight, Nat. Geosci., 2010, 3, 173–177. ArticleCAS Google Scholar
L. Fantozzi, R. Ferrara, F. P. Frontini and F. Dini, Factors influencing the daily behaviour of dissolved gaseous mercury concentration in the Mediterranean Sea, Mar. Chem., 2007, 107, 4–12. ArticleCAS Google Scholar
M. Monperrus, E. Tessier, D. Amouroux, A. Leynaert, P. Huonnic and O. F. X. Donard, Mercury methylation, demethylation and reduction rates in coastal and marine surface waters of the Mediterranean Sea, Mar. Chem., 2007, 107, 49–63. ArticleCAS Google Scholar
N. J. O’Driscoll, L. Poissant, J. Canario, J. Ridal and D. R. S. Lean, Continuous analysis of dissolved gaseous mercury and mercury volatilization in the upper St. Lawrence River: Exploring temporal relationships and UV attenuation, Environ. Sci. Technol., 2007, 41, 5342–5348. ArticlePubMedCAS Google Scholar
S. C. Peters, J. L. Wollenberg, D. P. Morris and J. A. Porter, Mercury emission to the atmosphere from experimental manipulation of DOC and UVR in mesoscale field chambers in a freshwater lake, Environ. Sci. Technol., 2007, 41, 7356–7362. ArticleCASPubMed Google Scholar
L. Whalin, E.-H. Kim and R. Mason, Factors influencing the oxidation, reduction, methylation and demethylation of mercury species in coastal waters, Mar. Chem., 2007, 107, 278–294. ArticleCAS Google Scholar
L. C. Chasar, B. C. Scudder, A. R. Stewart, A. H. Bell and G. R. Aiken, Mercury cycling in stream ecosystems. 3. Trophic dynamics and methylmercury bioaccumulation, Environ. Sci. Technol., 2009, 43, 2733–2739. ArticleCASPubMed Google Scholar
A. C. Luengen and A. R. Flegal, Role of phytoplankton in mercury cycling in the San Francisco Bay estuary, Limnol. Oceanogr., 2009, 54, 23–40. ArticleCAS Google Scholar
J. A. Ortega-Garcia, K. Rodriguez, M. Martin, D. D. Velez, V. M. C. Sanchez-Alarcon, A. M. T. Cantero, C. G.-V. Galindo-Cascales, J. M., M. F. Sanchez-Sauco, M. Sanchez-Solis, B. Alfonso-Marsilla and F. Romero-Braquehais, Estimated intake levels of methylmercury in children, childbearing age and pregnant women in a Mediterranean region, Murcia, Spain, Eur. J. Pediatr., 2008, 168, 1075–1080. ArticlePubMedCAS Google Scholar
P. M. Outridge, R. W. Macdonald, F. Wang, G. A. Stern and A. P. Dastoor, A mass balance inventory of mercury in the Arctic Ocean, Environ. Chem., 2008, 5, 89–111. ArticleCAS Google Scholar
M. L. Brooks, D. M. McKnight and W. H. Clements, Photochemical control of copper complexation by dissolved organic matter in Rocky Mountain streams, Colorado, Limnol. Oceanogr., 2007, 52, 766–779. ArticleCAS Google Scholar
J. H. Larson, P. C. Frost, Z. Y. Zheng, C. A. Johnston, S. D. Bridgham, D. M. Lodge and G. A. Lamberti, Effects of upstream lakes on dissolved organic matter in streams, Limnol. Oceanogr., 2007, 52, 60–69. ArticleCAS Google Scholar
G. C. Shank, R. F. Whitehead, M. L. Smith, S. A. Skrabal and R. J. Kieber, Photodegradation of strong copper-complexing ligands in organic-rich estuarine waters, Limnol. Oceanogr., 2006, 51, 884–892. ArticleCAS Google Scholar
R. P. Schwarzenbach, B. I. Escher, K. Fenner, T. B. Hofstetter, C. A. Johnson, U. von Gunten and B. Wehrli, The challenge of micropollutants in aquatic systems, Science, 2006, 313, 1072–1077. ArticleCASPubMed Google Scholar
L. Lamon, M. D. Valle, A. Critto and A. Marcomini, Introducing an integrated climate change perspective in POPs modelling, monitoring and regulation, Environ. Pollut., 2009, 157, 1971–1980. ArticleCASPubMed Google Scholar
K. Ram and C. Anastasio, Photochemistry of phenanthrene, pyrene, and fluoranthene in ice and snow, Atmos. Environ., 2009, 43, 2252–2259. ArticleCAS Google Scholar
N. Matykiewiczova, J. Klanova and P. Klan, Photochemical degradation of PCBs in snow, Environ. Sci. Technol., 2007, 41, 8308–8314. ArticleCASPubMed Google Scholar
J. F. Niu, G. Yu and X. T. Liu, Advances in photolysis of persistent organic pollutants in water, Prog. Chem., 2005, 17, 938–948. CAS Google Scholar
J. J. Guerard, P. L. Miller, T. D. Trouts and Y. P. Chin, The role of fulvic acid composition in the photosensitized degradation of aquatic contaminants, Aquat. Sci., 2009, 71, 160–169. ArticleCAS Google Scholar
D. M. Ricciuto, K. J. Davis and K. Keller, A Bayesian calibration of a simple carbon cycle model: The role of observations in estimating and reducing uncertainty, Global Biogeochem. Cycles, 2008, 22, GB2030. ArticleCAS Google Scholar
R. L. McKenzie, P. J. Aucamp, A. F. Bais, L. O. Bjorn and M. Ilyas, Changes in biologically-active ultraviolet radiation reaching the Earth’s surface, Photochem. Photobiol. Sci., 2007, 6, 218–231. ArticleCASPubMed Google Scholar
J. Stroeve, M. M. Holland, W. Maier, T. Scambos and M. Serreze, Arctic ice decline: Faster than forecast, Geophys. Res. Lett., 2007, 34, L09501. Article Google Scholar
R. B. Setlow, The wavelengths in sunlight effective in producing skin cancer: A theoretical analysis, Proc. Natl. Acad. Sci. U. S. A., 1974, 71, 3363–3366. ArticleCASPubMedPubMed Central Google Scholar
G. A. Meehl, T. F. Stocker, W. D. Collins, P. Friedlingstein, A. T. Gaye, J. M. Gregory, A. Kitoh, R. Knutti, J. M. Murphy, A. Noda, S. C. B. Raper, I. G. Watterson, A. J. A. J. Weaver and Z.-C. Zhao, Global Climate Projections., in Climate Change 2007: The Physical Science Basis. Contribution of Working Group I to the Fourth Assessment Report of the Intergovernmental Panel on Climate Change, ed. S. Solomon, D. Qin, M. Manning, Z. Chen, M. Marquis, K. B. Averyt, M. Tignor and H. L. Miller, Cambridge University Press, Cambridge, U. K.; New York, NY, USA, 2007, pp. 747–845. Google Scholar