W. Troy Baisden
GNS Science
29 Papers
241 Citations
W. Troy Baisden is an academic researcher from GNS Science. The author has contributed to research in topics: Soil carbon & Soil water. The author has an hindex of 14, co-authored 29 publications. Previous affiliations of W. Troy Baisden include University of Waikato.
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Papers
Convergence of soil nitrogen isotopes across global climate gradients
Joseph M. Craine,Andrew J. Elmore,Lixin Wang,Laurent Augusto,W. Troy Baisden,E. N. J. Brookshire,Michael D. Cramer,Niles J. Hasselquist,Erik A. Hobbie,Ansgar Kahmen,Keisuke Koba,J. Marty Kranabetter,Michelle C. Mack,Erika Marin-Spiotta,Jordan R. Mayor,Kendra K. McLauchlan,Anders Michelsen,Gabriela Bielefeld Nardoto,Rafael S. Oliveira,Steven S. Perakis,Pablo Luis Peri,Carlos A. Quesada,Andreas Richter,Louis A. Schipper,Bryan A. Stevenson,Benjamin L. Turner,Ricardo Augusto Gorne Viani,Wolfgang Wanek,Bernd Zeller +28 more
TL;DR: In both hot ecosystems and dry ecosystems, soil organic matter was more enriched in 15N than in corresponding cold ecosystems or wet ecosystems, and soil δ15N showed no consistent trends across global climate and latitudinal gradients.
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The Ross Sea Dipole – temperature, snow accumulation and sea ice variability in the Ross Sea region, Antarctica, over the past 2700 years
Nancy A. N. Bertler,Nancy A. N. Bertler,Howard Conway,Dorthe Dahl-Jensen,D. B. Emanuelsson,D. B. Emanuelsson,Mai Winstrup,Paul Vallelonga,James E. Lee,Edward J. Brook,Jeffrey P. Severinghaus,Taylor J. Fudge,E. D. Keller,W. Troy Baisden,W. Troy Baisden,Richard C. A. Hindmarsh,Peter Neff,Peter Neff,Peter Neff,Thomas Blunier,Ross Edwards,Ross Edwards,Paul Andrew Mayewski,Sepp Kipfstuhl,Christo Buizert,Silvia Canessa,Ruzica Dadic,Helle Astrid Kjær,Andrei V. Kurbatov,Dongqi Zhang,Edwin D. Waddington,Giovanni Baccolo,Thomas Beers,Hannah J. Brightley,Hannah J. Brightley,Lionel Carter,David Clemens-Sewall,Viorela G. Ciobanu,Barbara Delmonte,Lukas Eling,Lukas Eling,Aja Ellis,Aja Ellis,Shruthi Ganesh,Nicholas R. Golledge,Nicholas R. Golledge,Skylar A. Haines,Michael Handley,Robert L. Hawley,Chad M. Hogan,Katelyn M. Johnson,Katelyn M. Johnson,Elena V. Korotkikh,Daniel P. Lowry,Darcy Mandeno,Robert M. McKay,J. A. Menking,Tim R Naish,Caroline Noerling,Agathe Ollive,Anais Orsi,Bernadette C. Proemse,A. Pyne,Rebecca L. Pyne,James A. Renwick,Reed P. Scherer,Stefanie Semper,Marius Folden Simonsen,Sharon B. Sneed,Eric J. Steig,Andrea Tuohy,Andrea Tuohy,Andrea Tuohy,Abhijith Ulayottil Venugopal,Abhijith Ulayottil Venugopal,Fernando Valero-Delgado,Janani Venkatesh,Feitang Wang,Shimeng Wang,D. Winski,V. Holly L. Winton,V. Holly L. Winton,Arran Whiteford,Cunde Xiao,Jiao Yang,Xin Zhang +85 more
TL;DR: In this paper, a new, annually-dated ice core record from the eastern Ross Sea is presented, with data from the Roosevelt Island Climate Evolution (RICE) ice core records with climate reanalysis data for the 1979-2012 calibration period.
Long-term nitrogen additions increased surface soil carbon concentration in a forest plantation despite elevated decomposition
TL;DR: In this paper, the authors present a 15-year-long field study and show an average increase of 14.6% in soil C concentration in the 0-5 cm mineral soil layer in N fertilized (defined as N+ hereafter) sub-plots of a second-rotation Pinus radiata plantation in New Zealand compared to control subplots.
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Greater soil carbon stocks and faster turnover rates with increasing agricultural productivity
Jonathan Sanderman,Jonathan Sanderman,Courtney A. Creamer,Courtney A. Creamer,W. Troy Baisden,Mark Farrell,Stewart Fallon +6 more
- 18 Aug 2016
TL;DR: In this article, archived soil samples from four decades of a long-term crop rotation trial were analyzed for soil organic matter (SOM) cycling-relevant properties: C and N content, bulk composition by nuclear magnetic resonance (NMR) spectroscopy, amino sugar content, short-term C bioavailability assays, and longterm C turnover rates by modeling the incorporation of the bomb spike in atmospheric 14C into the soil.
A comparison of different approaches for measuring denitrification rates in a nitrate removing bioreactor
TL;DR: DR(N₂) measurements were the easiest and most efficient approach for determining the denitrification rate and N₁O production of a Denitrification bed and demonstrated that the majority of NO₃⁻ removal was due to heterotrophicDenitrification.
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