Publications

Found 343 results
Author Title [ Type(Asc)] Year
Filters: First Letter Of Last Name is P  [Clear All Filters]
Journal Article
Petrenko VV, Smith AM, Schaefer H, Riedel K, Brook E, Baggenstos D, Harth C, Hua Q, Buizert C, Schilt A et al.. 2017. Minimal geological methane emissions during the Younger Dryas–Preboreal abrupt warming event. Nature. 548:443–446.
Petrenko VV, Smith AM, Schaefer H, Riedel K, Brook E, Baggenstos D, Harth C, Hua Q, Buizert C, Orsi AJ et al.. 2017. Minimal geological methane emissions during the Younger Dryas–Preboreal abrupt warming event. Nature. 548:443–446.
Wilson S.A, Dipple G.M, Raudsepp M., Oliver S.L, Gabites J, Power I.M, Southam G.. 2008. Mineral transformations in tailings from active mines: Implications for acid neutralization potential and carbon dioxide sequestration. GEOCHIMICA ET COSMOCHIMICA ACTA. 72:A1025.
Feistel R., Wielgosz R., Bell S.A, Camoes M.F, Cooper J.R, Dexter P., Dickson A.G, Fisicaro P., Harvey A.H, Heinonen M. et al.. 2016. Metrological challenges for measurements of key climatological observables: oceanic salinity and pH, and atmospheric humidity. Part 1: overview. METROLOGIA. 53:R1-R11.
Dickson A.G, Camoes M.F, Spitzer P., Fisicaro P., Stoica D., Pawlowicz R, Feistel R.. 2016. Metrological challenges for measurements of key climatological observables. Part 3: Seawater pH. METROLOGIA. 53:R26-R39.
Pawlowicz R, Feistel R., McDougall T.J, Ridout P., Seitz S., Wolf H.. 2016. Metrological challenges for measurements of key climatological observables Part 2: Oceanic salinity. METROLOGIA. 53:R12-R25.
Al TA, Banks V, Loomer D, Parker BL, Mayer K.U. 2006. Metal mobility during in situ chemical oxidation of TCE by KMnO4. JOURNAL OF CONTAMINANT HYDROLOGY. 88:137-152.
Dyson RJ, Vizcay-Barrena G, Band LR, Fernandes AN, French AP, Fozard JA, T. Hodgman C, Kenobi K, Pridmore TP, Stout M et al.. 2014. Mechanical modelling quantifies the functional importance of outer tissue layers during root elongation and bending. NEW PHYTOLOGIST. 202:1212-1222.
Petrenko VV, Severinghaus JP, Schaefer H, Smith AM, Kuhl T, Baggenstos D, Hua Q, Brook EJ, Orsi AJ,. 2016. Measurements of 14C in ancient ice from Taylor Glacier, Antarctica constrain in situ cosmogenic 14CH4 and 14CO production rates. Geochimica et Cosmochimica Acta. 177:62–77.
Petrenko VV, Severinghaus JP, Schaefer H, Smith AM, Kuhl T, Baggenstos D, Hua Q, Brook EJ, Rose P, Kulin R et al.. 2016. Measurements of 14C in ancient ice from Taylor Glacier, Antarctica constrain in situ cosmogenic 14CH4 and 14CO production rates. Geochimica et Cosmochimica Acta. 177:62–77.
Loomer DB, Al TA, Banks VJ, Parker BL, Mayer K.U. 2010. Manganese Valence in Oxides Formed from in Situ Chemical Oxidation of TCE by KMnO4. ENVIRONMENTAL SCIENCE & TECHNOLOGY. 44:5934-5939.
Loomer DB, Al TA, Banks VJ, Parker BL, Mayer K.U. 2011. Manganese and trace-metal mobility under reducing conditions following in situ oxidation of TCE by KMnO4: A laboratory column experiment. JOURNAL OF CONTAMINANT HYDROLOGY. 119:13-24.
Ionov DA, Prikhodko VS, Bodinier J-L, Sobolev AV, Wise S. 2005. Lithospheric mantle beneath the south-eastern Siberian craton: petrology of peridotite xenoliths in basalts from the Tokinsky Stanovik. Contributions to Mineralogy and Petrology. 149:647–665.
Ionov DA, Prikhodko VS, Bodinier JL,. 2005. Lithospheric mantle beneath the south-eastern Siberian craton: petrology of peridotite xenoliths in basalts from the Tokinsky Stanovik. … to Mineralogy and ….
Pawlowicz R, Feistel R. 2012. Limnological applications of the Thermodynamic Equation of Seawater 2010 (TEOS-10). LIMNOLOGY AND OCEANOGRAPHY-METHODS. 10:853-867.
Hobbs TE, Kyriakopoulos C, Newman AV, Protti M, Yao D. 2017. Large and primarily updip afterslip following the 2012 Mw 7.6 Nicoya, Costa Rica, earthquake. Journal of Geophysical Research: Solid Earth. 122:5712–5728.
J Viruete E, Contreras F, Joubert M, Urien P, Stein G, Lopera E, Wise S, Ullrich T, Pérez-Estaún A. 2007. La secuencia magmática del Jurásico Superior-Cretácico Superior de la Cordillera Central, República Dominicana. Bolet{ín Geológico y Minero. 118:243–267.
Pell J, Russell JK, Zhang S. 2015. Kimberlite emplacement temperatures from conodont geothermometry. Earth and Planetary Science Letters. 411:131–141.
Porritt L, Russell J.K. 2012. Kimberlite ash: Fact or fiction. PHYSICS AND CHEMISTRY OF THE EARTH. 45-46:24-32.
Russell JK, Porritt L, Lavallee Y, Dingwell DB. 2012. Kimberlite ascent by assimilation-fuelled buoyancy. Nature. 481:352–356.
Russell JK, Porritt L, Lavallee Y, Dingwell DB. 2012. Kimberlite ascent by assimilation-fuelled buoyancy. NATURE. 481:352-U133.
Pawlowicz R. 2013. Key Physical Variables in the Ocean: Temperature, Salinity, and Density. Nature Education Knowledge . 4(4):13.
Preciado HF, Li LY, Weis D. 2007. Investigation of past and present multi-metal input along two highways of British Columbia, Canada, using lead isotopic signatures. Water, air, and soil pollution.
Preciado HF, Li LY, Wise S. 2007. Investigation of past and present multi-metal input along two highways of British Columbia, Canada, using lead isotopic signatures. Water, air, and soil pollution. 184:127–139.
Porritt L, Cas R.AF, Crawford B.B. 2008. In-vent column collapse as an alternative model for massive volcaniclastic kimberlite emplacement: An example from the Fox kimberlite, Ekati Diamond Mine, NWT, Canada. JOURNAL OF VOLCANOLOGY AND GEOTHERMAL RESEARCH. 174:90-102.

Pages