159
Views
43
CrossRef citations to date
0
Altmetric
Original Articles

Oxygen isotopic equilibrium between carbon dioxide and water in soils

Pages 163-178 | Received 23 Jan 1997, Accepted 15 Oct 1997, Published online: 15 Dec 2016

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (7)

Kadmiel Maseyk, Lisa Wingate, Ulli Seibt, Jaleh Ghashghaie, Camille Bathellier, Pedro Almeida, Raquel Lobo de Vale, Joao S. Pereira, Dan Yakir & Maurizio Mencuccini. (2009) Biotic and abiotic factors affecting the δ13C of soil respired CO 2 in a Mediterranean oak woodland† . Isotopes in Environmental and Health Studies 45:4, pages 343-359.
Read now
Britta Hartard, C. Máguas & M. Lakatos. (2008) δ18O characteristics of lichens and their effects on evaporative processes of the subjacent soil. Isotopes in Environmental and Health Studies 44:1, pages 111-128.
Read now
D. V. Khvorostyanov, G. Krinner, P. Ciais, M. Heimann & S. A. Zimov. (2008) Vulnerability of permafrost carbon to global warming. Part I: model description and role of heat generated by organic matter decomposition. Tellus B: Chemical and Physical Meteorology 60:2, pages 250-264.
Read now
Scott R. Saleska, Joanne H. Shorter, Scott Herndon, Rodrigo Jiménez, J. Barry McManus, J. William Munger, David D. Nelson & Mark S. Zahniser. (2006) What are the instrumentation requirements for measuring the isotopic composition of net ecosystem exchange of CO2 using eddy covariance methods?† . Isotopes in Environmental and Health Studies 42:2, pages 115-133.
Read now
Philippe Peylin, Philippe Ciais, A. Scott Denning, Pieter P. Tans, Joseph A. Berry & James W. C. White. (1999) A 3-dimensional study of δ18O in atmospheric CO2: contribution of different land ecosystems. Tellus B: Chemical and Physical Meteorology 51:3, pages 642-667.
Read now
Lawrence B. Flanagan, David S. Kubien & James R. Ehleringer. (1999) Spatial and temporal variation in the carbon and oxygen stable isotope ratio of respired CO2 in a boreal forest ecosystem. Tellus B: Chemical and Physical Meteorology 51:2, pages 367-384.
Read now
Leonel Da S. L. Sternberg, Marcelo Z. Moreira, Luiz A. Martinelli, Reynaldo L. Victoria, Edelcilio M. Barbosa, Luiz C. M. Bonates & Daniel Nepstad. (1998) The relationship between 18O/16O and 13C/12C ratios of ambient CO2 in two Amazonian tropical forests. Tellus B: Chemical and Physical Meteorology 50:4, pages 366-376.
Read now

Articles from other publishers (36)

Yusen Yuan, Lixin Wang, Honglang Wang, Wenqing Lin, Wenzhe Jiao & Taisheng Du. (2022) A modified isotope-based method for potential high-frequency evapotranspiration partitioning. Advances in Water Resources 160, pages 104103.
Crossref
Ralph F. KeelingHeather D. Graven. (2021) Insights from Time Series of Atmospheric Carbon Dioxide and Related Tracers. Annual Review of Environment and Resources 46:1, pages 85-110.
Crossref
Laura K. Meredith, Jérôme Ogée, Kristin Boye, Esther Singer, Lisa Wingate, Christian von Sperber, Aditi Sengupta, Mary Whelan, Erin Pang, Marco Keiluweit, Nicolas Brüggemann, Joe A. Berry & Paula V. Welander. (2018) Soil exchange rates of COS and CO18O differ with the diversity of microbial communities and their carbonic anhydrase enzymes. The ISME Journal 13:2, pages 290-300.
Crossref
X. Morel, B. Decharme, C. Delire, G. Krinner, M. Lund, B. U. Hansen & M. Mastepanov. (2019) A New Process-Based Soil Methane Scheme: Evaluation Over Arctic Field Sites With the ISBA Land Surface Model. Journal of Advances in Modeling Earth Systems 11:1, pages 293-326.
Crossref
Sam P. Jones, Jérôme Ogée, Joana Sauze, Steven Wohl, Noelia Saavedra, Noelia Fernández-Prado, Juliette Maire, Thomas Launois, Alexandre Bosc & Lisa Wingate. (2017) Non-destructive estimates of soil carbonic anhydrase activity and associated soil water oxygen isotope composition. Hydrology and Earth System Sciences 21:12, pages 6363-6377.
Crossref
Joana Sauze, Jérôme Ogée, Pierre-Alain Maron, Olivier Crouzet, Virginie Nowak, Steven Wohl, Aurore Kaisermann, Sam P. Jones & Lisa Wingate. (2017) The interaction of soil phototrophs and fungi with pH and their impact on soil CO2, CO18O and OCS exchange. Soil Biology and Biochemistry 115, pages 371-382.
Crossref
M.E.G. Hofmann, B. Horváth, L. Schneider, W. Peters, K. Schützenmeister & A. Pack. (2017) Atmospheric measurements of Δ17O in CO2 in Göttingen, Germany reveal a seasonal cycle driven by biospheric uptake. Geochimica et Cosmochimica Acta 199, pages 143-163.
Crossref
Laura Gangi, Youri Rothfuss, Jerôme Ogée, Lisa Wingate, Harry Vereecken & Nicolas Brüggemann. (2015) A New Method for In Situ Measurements of Oxygen Isotopologues of Soil Water and Carbon Dioxide with High Time Resolution. Vadose Zone Journal 14:8, pages vzj2014.11.0169.
Crossref
S. N. Vardag, S. Hammer, M. Sabasch, D. W. T. Griffith & I. Levin. (2015) First continuous measurements of δ<sup>18</sup>O-CO<sub>2</sub> in air with a Fourier transform infrared spectrometer. Atmospheric Measurement Techniques 8:2, pages 579-592.
Crossref
Matti Barthel, Patrick Sturm, Albin Hammerle, Nina Buchmann, Lydia Gentsch, Rolf Siegwolf & Alexander Knohl. (2014) Soil H 218 O labelling reveals the effect of drought on C 18 OO fluxes to the atmosphere. Journal of Experimental Botany 65:20, pages 5783-5793.
Crossref
J. Y. Tang & W. J. Riley. (2014) Technical Note: Simple formulations and solutions of the dual-phase diffusive transport for biogeochemical modeling. Biogeosciences 11:14, pages 3721-3728.
Crossref
J. H. Shim, H. H. Powers, C. W. Meyer, A. Knohl, T. E. Dawson, W. J. Riley, W. T. Pockman & N. McDowell. (2013) Hydrologic control of the oxygen isotope ratio of ecosystem respiration in a semi-arid woodland. Biogeosciences 10:7, pages 4937-4956.
Crossref
K.E. Anders Ohlsson. (2011) Theoretical model of the abiotic component of soil 13CO2 tracer efflux in 13C pulse-labeling experiments on plant–soil systems. Soil Biology and Biochemistry 43:3, pages 675-681.
Crossref
LISA WINGATE, JÉRÔME OGÉE, RÉGIS BURLETT & ALEXANDRE BOSC. (2010) Strong seasonal disequilibrium measured between the oxygen isotope signals of leaf and soil CO 2 exchange . Global Change Biology 16:11, pages 3048-3064.
Crossref
E. PENDALL, L. SCHWENDENMANN, T. RAHN, J. B. MILLER, P. P. TANS & J. W. C. WHITE. (2010) Land use and season affect fluxes of CO2, CH4, CO, N2O, H2 and isotopic source signatures in Panama: evidence from nocturnal boundary layer profiles. Global Change Biology 16:10, pages 2721-2736.
Crossref
S. Murayama, C. Takamura, S. Yamamoto, N. Saigusa, S. Morimoto, H. Kondo, T. Nakazawa, S. Aoki, T. Usami & M. Kondo. (2010) Seasonal variations of atmospheric CO 2 , δ 13 C, and δ 18 O at a cool temperate deciduous forest in Japan: Influence of Asian monsoon . Journal of Geophysical Research 115:D17.
Crossref
Lisa WingateJérôme OgéeMatthias CuntzBernard GentyIlja ReiterUlli SeibtDan YakirKadmiel MaseykElise G. PendallMargaret M. BarbourBehzad MortazaviRégis BurlettPhilippe PeylinJohn Miller, Maurizio MencucciniJee H. Shim, John HuntJohn Grace. (2009) The impact of soil microorganisms on the global budget of δ 18 O in atmospheric CO 2 . Proceedings of the National Academy of Sciences 106:52, pages 22411-22415.
Crossref
Nerea Ubierna, John D. Marshall & Lucas A. Cernusak. (2009) A new method to measure carbon isotope composition of CO 2 respired by trees: stem CO 2 equilibration . Functional Ecology 23:6, pages 1050-1058.
Crossref
LISA WINGATE, ULLI SEIBT, KADMIEL MASEYK, JÉRÔME OGÉE, PEDRO ALMEIDA, DAN YAKIR, JOAO S. PEREIRA & MAURIZIO MENCUCCINI. (2008) Evaporation and carbonic anhydrase activity recorded in oxygen isotope signatures of net CO 2 fluxes from a Mediterranean soil . Global Change Biology 14:9, pages 2178-2193.
Crossref
MARGARET M. BARBOUR, GRAHAM D. FARQUHAR, DAVID T. HANSON, CHRISTOPHER P. BICKFORD, HEATH POWERS & NATE G. MCDOWELL. (2007) A new measurement technique reveals temporal variation in ? 18 O of leaf-respired CO 2 . Plant, Cell & Environment 30:4, pages 456-468.
Crossref
Michael Lakatos, Britta Hartard & Cristina Máguas. 2007. Stable Isotopes as Indicators of Ecological Change. Stable Isotopes as Indicators of Ecological Change 77 92 .
U. Seibt, L. Wingate, J. Lloyd & J. A. Berry. (2006) Diurnally variable δ 18 O signatures of soil CO 2 fluxes indicate carbonic anhydrase activity in a forest soil . Journal of Geophysical Research: Biogeosciences 111:G4.
Crossref
LUITGARD SCHWENDENMANN & EDZO VELDKAMP. (2006) Long-term CO 2 production from deeply weathered soils of a tropical rain forest: evidence for a potential positive feedback to climate warming . Global Change Biology 12:10, pages 1878-1893.
Crossref
L. R. Welp, J. T. Randerson & H. P. Liu. (2006) Seasonal exchange of CO 2 and δ 18 O-CO 2 varies with postfire succession in boreal forest ecosystems . Journal of Geophysical Research 111:G3.
Crossref
Chun-Ta Lai, William Riley, Clenton Owensby, Jay Ham, Andrew Schauer & James R. Ehleringer. (2006) Seasonal and interannual variations of carbon and oxygen isotopes of respired CO 2 in a tallgrass prairie: Measurements and modeling results from 3 years with contrasting water availability . Journal of Geophysical Research 111:D8.
Crossref
Margaret M. Barbour, Lucas A. Cernusak, David Whitehead, Kevin L. Griffin, Matthew H. Turnbull, David T. Tissue & Graham D. Farquhar. (2005) Nocturnal stomatal conductance and implications for modelling δ18O of leaf-respired CO2 in temperate tree species. Functional Plant Biology 32:12, pages 1107.
Crossref
Atsuhiro Takahashi, Tetsuya Hiyama, Hiroshi A. Takahashi & Yoshihiro Fukushima. (2004) Analytical estimation of the vertical distribution of CO2 production within soil: application to a Japanese temperate forest. Agricultural and Forest Meteorology 126:3-4, pages 223-235.
Crossref
Lucas A. Cernusak, Graham D. Farquhar, S. Chin Wong & Hilary Stuart-Williams. (2004) Measurement and Interpretation of the Oxygen Isotope Composition of Carbon Dioxide Respired by Leaves in the Dark. Plant Physiology 136:2, pages 3350-3363.
Crossref
William J. Riley, Christopher J. Still, Brent R. Helliker, Miguel Ribas-Carbo & Joseph A. Berry. (2003) 18 O composition of CO 2 and H 2 O ecosystem pools and fluxes in a tallgrass prairie: Simulations and comparisons to measurements . Global Change Biology 9:11, pages 1567-1581.
Crossref
Matthias Cuntz. (2003) A comprehensive global three-dimensional model of δ 18 O in atmospheric CO 2 : 2. Mapping the atmospheric signal . Journal of Geophysical Research 108:D17.
Crossref
Matthias Cuntz. (2003) A comprehensive global three-dimensional model of δ 18 O in atmospheric CO 2 : 1. Validation of surface processes . Journal of Geophysical Research 108:D17.
Crossref
W. J. Riley, C. J. Still, M. S. Torn & J. A. Berry. (2002) A mechanistic model of H 2 18 O and C 18 OO fluxes between ecosystems and the atmosphere: Model description and sensitivity analyses . Global Biogeochemical Cycles 16:4, pages 42-1-42-14.
Crossref
I. LEVIN, P. CIAIS, R. LANGENFELDS, M. SCHMIDT, M. RAMONET, K. SIDOROV, N. TCHEBAKOVA, M. GLOOR, M. HEIMANN, E.-D. SCHULZE, N. N. VYGODSKAYA, O. SHIBISTOVA & J. LLOYD. (2002) Three years of trace gas observations over the EuroSiberian domain derived from aircraft sampling - a concerted action. Tellus B 54:5, pages 696-712.
Crossref
B. Alexander, M. K. Vollmer, T. Jackson, R. F. Weiss & M. H. Thiemens. (2012) Stratospheric CO 2 isotopic anomalies and SF 6 and CFC Tracer Concentrations in the Arctic Polar Vortex . Geophysical Research Letters 28:21, pages 4103-4106.
Crossref
Jim GillonDan Yakir. (2001) Influence of Carbonic Anhydrase Activity in Terrestrial Vegetation on the 18 O Content of Atmospheric CO 2 . Science 291:5513, pages 2584-2587.
Crossref
Andreas Zahn, Rolf Neubert & Ulrich Platt. (2000) Fate of long-lived trace species near the northern hemispheric tropopause: 2. Isotopic composition of carbon dioxide ( 13 CO 2 , 14 CO 2 , and C 18 O 16 O) . Journal of Geophysical Research: Atmospheres 105:D5, pages 6719-6735.
Crossref