Environmental Engineering Reference
In-Depth Information
34. Diaz RJ, Rosenberg R (2008) Spreading dead zones and consequences for marine ecosystems.
Science 321:926-929
35. Scavia D, Justic D, Bierman VJ (2004) Reducing hypoxia in the Gulf of Mexico: advice from
three models. Estuaries 27:419-425
36. Lam P, Kuypers MMM (2011) Microbial nitrogen cycling processes in oxygen minimum
zones. Ann Rev Mar Sci 3:317-345
37. Riley GA (1946) Factors controlling phytoplankton populations on Georges Bank. J Mar Res
6:54-73
38. Riley GA (1947) A theoretical analysis of the zooplankton populations of Georges Bank. J Mar
Res 6:104-113
39. Fasham MJR, Ducklow HW, McKelvie SM (1990) A nitrogen-based model of plankton
dynamics in the oceanic mixed layer. J Mar Res 48:591-639
40. Orr JC et al (2001) Estimates of anthropogenic carbon uptake from four three-dimensional
global ocean models. Global Biogeochem Cycles 15:43-60
41. Doney SC et al (2004) Evaluating global ocean carbon models: the importance of realistic
physics. Global Biogeochem Cycles 18:GB3017. doi: 10.1029/2003GB002150
42. Boyd PW, Doney SC (2001) Modeling regional response by marine pelagic ecosystems to
global climate change. Geophys Res Lett 29. doi: 10.10292001GL014130
43. Follows MJ, Dutkiewicz S, Grant S, Chisholm SW (2007) Emergent biogeography of micro-
bial communities in a model ocean. Science 315:1843-1846
44. Le Qu´r´ C et al (2005) Ecosystem dynamics based on plankton function types for global
ocean biogeochemistry models. Global Change Biol 11:2016-2040. doi: 10.111/j.1365-
2486.2005.1004.x
45. Sinha B, Buitenhuis ET, Le Qu´r´ C, Anderson TR (2010) Comparison of the emergent
behavior of a complex ecosystem model in two ocean general circulation models. Prog
Oceanogr 84:204-224
46. Orr JC et al (2005) Anthropogenic ocean acidification over the twenty-first century and its
impact on calcifying organisms. Nature 437:681-686
47. Friedrichs MAM et al (2007) Assessment of skill and portability in regional marine biogeo-
chemical models: role of multiple planktonic groups. J Geophys Res 112:C08001.
doi: 10.1029/2006JC003852
48. Anderson TR (2009) Progress in marine ecosystem modeling and the “unreasonable effective-
ness of mathematics.” J Mar Sys 81:4-11
49. Ducklow HW, Doney SC, Steinberg DK (2009) Contributions of long-term research and time-
series observation to marine ecology and biogeochemistry. Ann Rev Mar Sci 1:279-302
Topics and Reviews
Bali˜o BM, Fasham MJR, Bowles MC (2001) Ocean biogeochemistry and global change. IGBP
Science no 2, Stockholm (A popular summary of JGOFS main achievements)
Benitez-Nelson CR (2000) The biogeochemical cycling of phosphorus in marine systems. Earth-
Sci Rev 51:109-135
Brandes JA, Devol AH, Deutsch C (2007) New developments in the marine nitrogen cycle. Chem
Rev 107:577-589
Broecker WS (2009) Wally's quest to understand the ocean's CaCO 3 cycle. Ann Rev Mar Sci
1:1-18
Deutsch C, Brix H, Ito T, Frenzel H, Thompson L (2011) Climate-forced variability of ocean
hypoxia. Science 333:336-339
Diaz RJ (2000) Overview of hypoxia around the world. J Environ Quality 30:275-281
Doney SC et al (2001) Marine biogeochemical modeling: recent advances and future challenges.
Oceanography 14:93-108
Search WWH ::




Custom Search