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Cole, J., Caraco, N., Kling, G., & Kratz, T. (1994). Carbon dioxide supersaturation in the surface waters of lakes. Science, 265(5178), 1568–1570. Retrieved from http://www.sciencemag.org/content/265/5178/1568.short

Cole, J. J., Prairie, Y. T., Caraco, N. F., McDowell, W. H., Tranvik, L. J., Striegl, R. G., … Melack, J. (2007). Plumbing the global carbon cycle: integrating inland waters into the terrestrial carbon budget. Ecosystems, 10(1), 172–185. doi:10.1007/s10021-006-9013-8

Einsele, G. (2001). Atmospheric carbon burial in modern lake basins and its significance for the global carbon budget. Global and Planetary Change, 30(3-4), 167–195. doi:10.1016/S0921-8181(01)00105-9

Hanson, P. C., Bade, D. L., Carpenter, S. R., & Kratz, T. K. (2003). Lake metabolism: Relationships with dissolved organic carbon and phosphorus. Limnology and Oceanography, 48(3), 1112–1119. doi:10.4319/lo.2003.48.3.1112

Hanson, P. C., Pollard, A. I., Bade, D. L., Predick, K., Carpenter, S. R., & Foley, J. A. (2004). A model of carbon evasion and sedimentation in temperate lakes. Global Change Biology, 10(8), 1285–1298. doi:10.1111/j.1365-2486.2004.00805.x

Jones, S., Solomon, C., & Weidel, B. (2012). Subsidy or subtraction: how do terrestrial inputs influence consumer production in lakes? Freshwater Reviews, 37–49. doi:10.1608/FRJ-5.1.475

Pace, M. L., Cole, J. J., Carpenter, S. R., Kitchell, J. F., Hodgson, J. R., Van de Bogert, M. C., … Bastviken, D. (2004). Whole-lake carbon-13 additions reveal terrestrial support of aquatic food webs. Nature, 427(6971), 240–243. doi:10.1038/nature02215.1.

Raymond, P. a., Hartmann, J., Lauerwald, R., Sobek, S., McDonald, C., Hoover, M., … Guth, P. (2013). Global carbon dioxide emissions from inland waters. Nature, 503(7476), 355–359. doi:10.1038/nature12760

Regnier, P., Friedlingstein, P., Ciais, P., Mackenzie, F. T., Gruber, N., Janssens, I. a., … Thullner, M. (2013). Anthropogenic perturbation of the carbon fluxes from land to ocean. Nature Geoscience, 6(8), 597–607. doi:10.1038/ngeo1830

Roehm, C. L., Prairie, Y. T., & del Giorgio, P. A. (2009). The pCO2 dynamics in lakes in the boreal region of northern Québec, Canada. Global Biogeochemical Cycles, 23(3), 1–9. doi:10.1029/2008GB003297

Sobek, S., Algesten, G., Bergstrom, A.-K., Jansson, M., & Tranvik, L. J. (2003). The catchment and climate regulation of pCO2 in boreal lakes. Global Change Biology, 9(4), 630–641. Retrieved from http://onlinelibrary.wiley.com/doi/10.1046/j.1365-2486.2003.00619.x/full

Stallard, R. (1998). Terrestrial sedimentation and the carbon cycle: Coupling weathering and erosion to carbon burial. Global Biogeochemical Cycles, 12(2), 231–257. Retrieved from http://onlinelibrary.wiley.com/doi/10.1029/98GB00741/full

Tranvik, L. J., Downing, J. A., Cotner, J. B., Loiselle, S. A., Striegl, R. G., Ballatore, T. J., … Weyhenmeyer, G. A. (2009). Lakes and reservoirs as regulators of carbon cycling and climate. Limnology and Oceanography, 54(6), 2298–2314. Retrieved from http://cat.inist.fr/?aModele=afficheN&cpsidt=22279829

Wilkinson, G. M., Pace, M. L., & Cole, J. J. (2013). Terrestrial dominance of organic matter in north temperate lakes. Global Biogeochemical Cycles, 27(November 2012), n/a–n/a. doi:10.1029/2012GB004453