Articles | Volume 12, issue 1
https://doi.org/10.5194/bg-12-209-2015
https://doi.org/10.5194/bg-12-209-2015
Research article
 | 
12 Jan 2015
Research article |  | 12 Jan 2015

Variable C : N : P stoichiometry of dissolved organic matter cycling in the Community Earth System Model

R. T. Letscher, J. K. Moore, Y.-C. Teng, and F. Primeau

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Cited articles

Abell, J., Emerson, S., and Renaud, P.: Distributions of TOP, TON, and TOC in the North Pacific subtropical gyre: Implications for nutrient supply in the surface ocean and remineralization in the upper thermocline, J. Mar. Res., 58, 203–222, 2000.
Aluwihare, L. I., Repeta, D. J., Pantoja, S., and Johnson, C. G.: Two chemically distinct pools of organic nitrogen accumulate in the ocean, Science, 308, 1007–1010, 2005.
Amestoy, P. R., Duff, I. S., Koster, J., and L'Excellent, J.-Y.: A fully asynchronous multifrontal solver using distributed dynamic scheduling, SIAM Journal of Matrix Analysis and Applications, 23, 15–41, 2001.
Amestoy, P. R., Guermouche, A., L'Excellent, J.-Y., and Pralet, S.: Hybrid scheduling for the parallel solution of linear systems, Parallel Computing, 32, 136–156, 2006.
Aminot, A. and Kérouel, R.: Dissolved organic carbon, nitrogen and phosphorus in the NE Atlantic and the NW Mediterranean with particular reference to non-refractory fractions and degradation, Deep Sea Res. I, 51, 1975–1999, 2004.
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Marine DOM is known to exhibit stoichiometry depleted in N and P compared with POM, suggesting variable production and remineralization stoichiometry for C, N, and P within marine DOM cycling. We utilize marine DOM observations and an inverse tracer modeling framework to optimize DOM cycling parameters for the BEC biogeochemistry ocean model of the CESM, finding a variable stoichiometry with faster turnover of P > N > C superior to the commonly assumed Redfield stoichiometry for marine DOM.
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