研究领域
My research focuses on the sources, cycling and fate of carbon nitrogen and phosphorus in aquatic environments, and in particular their role in eutrophication in coastal environments.
To understand how these elements move and cycle through the environment I combine a range of approaches including standard wet chemical methods, the eddy correlation technique, planar optodes, flumes, stable isotopes and modelling.
近期论文
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Cook, P. L. M., and D. P. Holland. In Press. Long term dynamics of nutrient loads and phytoplankton in a large temperate Australian lagoon system affected by recurring blooms of Nodularia spumigena. Biogeochemistry.
Faber, P. A., P. L. M. Cook, I. D. Mckelvie, and P. S. Ellis. 2011. Development of a gas diffusion probe for the rapid measurement of pCO2 in aquatic samples. Anal. Chim. Acta 691: 1-5.
Cook, P. L. M., D. P. Holland, and A. R. Longmore. 2010. Effect of a flood event on the dynamics of phytoplankton and biogeochemistry in a large temperate Australian lagoon. Limnology & Oceanography 55: 1123-1133.
Cook, P. L. M., K. T. Aldridge, S. Lamontagne, and J. D. Brookes. 2010. Retention of nitrogen, phosphorus and silicon in a large semi-arid riverine lake system. Biogeochemistry 99: 49-63.
Joye, S. B., D. De Beer, and P. L. M. Cook. 2009. Biogeochemical Dynamics of Coastal Tidal Flats, p. 345-374. In G. M. E. Perillo, E. Wolanski, D. R. Cahoon and M. M. Brinson [eds.], Coastal Wetlands: an Ecosystem Integrated Approach. Elsevier.
Cook, P. L. M., J. Van Oevelen, K. Soetaert, and J. J. Middelburg. 2009. Benthic carbon and nitrogen cycling on intertidal mudflats of a temperate Australian estuary IV. An Inverse analysis analysis and synthesis. Marine Ecology Progress Series 394: 35-48.
Bissett, A., J. P. Bowman, C. Burke, and P. L. M. Cook. 2009. Effects of organic perturbation on marine sediment betaproteobacterial ammonia oxidizers and on benthic nitrogen biogeochemistry. Marine Ecology Progress Series 392: 17-32.
Evrard, V., P. L. M. Cook, B. Veuger, M. Huettel, and J. J. Middelburg. 2008. Tracing incorporation and pathways of carbon and nitrogen in microbial communities of photic subtidal sands. Aquat. Microb. Ecol. 53: 257-269.
Cardenas, M. B., P. L. M. Cook, H. S. Jiang, and P. Traykovski. 2008. Constraining denitrification in permeable wave-influenced marine sediment using linked hydrodynamic and biogeochemical modeling. Earth and Planetary Science Letters 275: 127-137.
Meysman, F. J. R., O. S. Galaktionov, P. L. M. Cook, F. Janssen, M. Huettel, and J. J. Middelburg. 2007. Quantifying biologically and physically induced flow and tracer dynamics in permeable sediments. Biogeosciences 4: 627-646.
Huettel, M., P. L. M. Cook, F. Janssen, G. Lavik, and J. J. Middelburg. 2007. Transport and degradation of a dinoflagellate algal bloom in a permeable sandy sediment. Marine Ecology Progress Series 340: 139-153.