Publications
Found 14 results
Author Title Type [ Year
] Filters: First Letter Of Last Name is P [Clear All Filters]
.
2025. High Protistan Parasite Occurrence During Fall in a Warm, Low Sea Ice Year in the Eastern Bering Sea.. J Eukaryot Microbiol. 72(4):e70018.
.
2025. Illuminating deep-sea considerations and experimental approaches for mCDR proposals. Environmental Research Letters. 20(6):061003.
.
2020. Global variability in seawater Mg:Ca and Sr:Ca ratios in the modern ocean. Proceedings of the National Academy of Sciences. 117:22281-22292.
.
2020. Global variability in seawater Mg:Ca and Sr:Ca ratios in the modern ocean. Proceedings of the National Academy of Sciences. 117:22281-22292.
.
2020. Global variability in seawater Mg:Ca and Sr:Ca ratios in the modern ocean. Proceedings of the National Academy of Sciences. 117:22281-22292.
.
2012. Luminescence and Marine Plankton (LAMP) final report. Research and Consultancy Report No. 22.
.
2010. Sea urchins tolerate acid water. BBC news: Science and Environment.
.
2009. Consequences of high CO2 and ocean acidification for microbes in the global ocean. Rising CO2, Ocean Acidification, and Their Impacts on Marine Microbes.
.
2008. Environmental factors controlling the phytoplankton blooms at the Patagonia shelf-break in spring. Deep Sea Research Part I: Oceanographic Research Papers. 55(9):1150–1166.
.
2008. Environmental factors controlling the phytoplankton blooms at the Patagonia shelf-break in spring. Deep Sea Research Part I: Oceanographic Research Papers. 55(9):1150–1166.
.
2008. Ocean Fertilisation: a potential means of geo-engineering? The Royal Society. 366(1882):3919-3945.
.
2008. Ocean fertilization: a potential means of geoengineering? Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences. 366(1882):3919–3945.
.
2008. Response to comment on “Phytoplankton calcification in a high-CO2 world”. Science. 322(5907)
