يعرض 1 - 20 نتائج من 93 نتيجة بحث عن '"Cerling, T. E."', وقت الاستعلام: 0.61s تنقيح النتائج
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    وصف الملف: application/pdf

    Relation: https://eprints.bournemouth.ac.uk/38663/1/1-s2.0-S1040618222001276-main.pdf; Hopley, P. J., Cerling, T. E., Crete, L., Werdelin, L., Mwebi, O., Manthi, F. K. and Leakey, L. N., 2023. Stable isotope analysis of carnivores from the Turkana Basin, Kenya: Evidence for temporally-mixed fossil assemblages. QUATERNARY INTERNATIONAL, 650, 12-27.

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    المساهمون: Laboratoire de Géologie de Lyon - Terre, Planètes, Environnement (LGL-TPE), École normale supérieure de Lyon (ENS de Lyon), Université de Lyon-Université de Lyon-Université Claude Bernard Lyon 1 (UCBL), Université de Lyon-Institut national des sciences de l'Univers (INSU - CNRS)-Université Jean Monnet - Saint-Étienne (UJM)-Centre National de la Recherche Scientifique (CNRS), University of Utah

    المصدر: ISSN: 0012-821X ; Earth and Planetary Science Letters ; https://hal.science/hal-02568580 ; Earth and Planetary Science Letters, 2018, 503, pp.227-235. ⟨10.1016/j.epsl.2018.09.026⟩.

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    وصف الملف: application/pdf

    Relation: Huth, T. E.; Cerling, T. E.; Marchetti, D. W.; Bowling, D. R.; Ellwein, A. L.; Passey, B. H. (2019). "Seasonal Bias in Soil Carbonate Formation and Its Implications for Interpreting High‐Resolution Paleoarchives: Evidence From Southern Utah." Journal of Geophysical Research: Biogeosciences 124(3): 616-632.; https://hdl.handle.net/2027.42/149224; Journal of Geophysical Research: Biogeosciences; Passey, B. H., & Henkes, G. A. ( 2012 ). Carbonate clumped isotope bond reordering and geospeedometry. Earth and Planetary Science Letters, 351–352, 223 – 236.; Marchetti, D. W., Hynek, S. A., & Cerling, T. E. ( 2012 ). Gravel‐capped benches above northern tributaries of the Escalante River, south‐central Utah. Geosphere, 8 ( 4 ), 835 – 853.; McFadden, L. D. ( 2013 ). Strongly dust‐influenced soils and what they tell us about landscape dynamics in vegetated aridlands of the southwestern United States. In M. Bickford (Ed.), The web of geological sciences: Advances, impacts, and interactions. s.l (pp. 501 – 532 ). America: The Geological Society.; McFadden, L. D., Wells, S. G., Brown, W. J., & Enzel, Y. ( 1992 ). Soil genesis on beach ridges of pluvial lake Mojave: Implications for Holocene lacustrine and eolian events in the Mojave Desert, southern California. Catena, 19, 77 – 97.; MesoWest, S. W. W. R. ( 2017 ). CRN CAPITOL REEF NP 38.2898–111.2619 1676 m SNOWNET. Retrieved from http://mesowest.utah.edu /, (accessed 14 April 2017).; Meyer, N. A., Breecker, D. O., Young, M. H., & Litvak, M. E. ( 2014 ). Simulating the effect of vegetation in formation of pedogenic carbonate. Soil Science Society of America Journal, 78 ( 3 ), 914 – 924.; Oerter, E., & Bowen, G. ( 2017 ). In situ monitoring of H and O stable isotopes in soil water reveals ecohydrologic dynamics in managed soil systems. Ecohydrology. https://doi.org/10.1002/eco.1841; Oerter, E., Perelet, A., Pardyjak, E., & Bowen, G. ( 2017 ). Membrane inlet laser spectroscopy to measure H and O stable isotope compositions of soil and sediment pore water with high sample throughput. Rapid Communications in Mass Spectrometry, 31, 75 – 84.; Oerter, E. J., & Amundson, R. ( 2016 ). Climate controls on spatial and temporal variations in the formation of pedogenic carbonate in the western Great Basin of North America. GSA Bulletin, 1 – 10.; Oerter, E. J., Sharp, W. D., Oster, J. L., Ebeling, A., Valley, J. W., Kozdon, R., Orland, I. J., Hellstrom, J., Woodhead, J. D., Hergt, J. M., Chadwick, O. A., & Amundson, R. ( 2016 ). Pedothem carbonates reveal anomalous North American atmospheric circulation 70,000–55,000 years ago. Proceedings of the National Academy of Sciences of the United States of America, 113 ( 4 ), 919 – 924. https://doi.org/10.1073/pnas.1515478113; Passey, B. H., Levin, N. E., Cerling, T. E., Brown, F. H., & Eiler, J. M. ( 2010 ). High temperature environments of human evolution from bond ordering in paleosol carbonates. Proceedings of the National Academy of Sciences of the United States of America, 107 ( 25 ), 11,245 – 11,249. https://doi.org/10.1073/pnas.1001824107; Pendall, E., Leavitt, S. W., Brooks, T., Kimball, B. A., Pinter, P. J. Jr., Wall, G. W., LaMorte, R. L., Wechsung, G., Wechsung, F., Adamsen, F., Matthias, A. D., & Thompson, T. L. ( 2001 ). Elevated CO₂ stimulates soil respiration in a FACE wheat field. Basic and Applied Ecology, 2 ( 3 ), 193 – 201. https://doi.org/10.1078/1439‐1791‐00053; Peters, N. A., Huntington, K. W., & Hoke, G. D. ( 2013 ). Hot or not? Impact of seasonally variable soil carbonate formation on paleotemperature and O‐isotope records from clumped isotope thermometry. Earth and Planetary Science Letters, 361, 208 – 218.; Prism Climate Group ( 2018 ). Oregon State University. Retrieved from http://prism.oregonstate.edu, (Accessed 26 January 2018).; Pustovoytov, K., Schmidt, K., & Taubald, H. ( 2007 ). Evidence for Holocene environmental changes in the Fertile Crescent provided by pedogenic carbonate coatings. Quaternary Research, 67, 315 – 327.; Quade, J., Eiler, J., Daëron, M., & Achyuthan, H. ( 2013 ). The clumped isotope geothermometer in soil and paleosol carbonate. Geochimica et Cosmochimica Acta, 105, 92 – 107.; Reheis, M. C., & Kihl, R. ( 1995 ). Dust deposition in southern Nevada and California, 1984–1989; relations to climate, source area, and source lithology. Journal of Geophysical Research, 100 ( D5 ), 8893 – 8918.; Reimer, P., Baillie, M. G. L., Bard, E., Bayliss, A., Beck, J. W., Blackwell, P. G., Bronk Ramsey, C., Buck, C. E., Burr, G. S., Edwards, R. L., Friedrich, M., Grootes, P. M., Guilderson, T. P., Hajdas, I., Heaton, T. J., Hogg, A. G., Hughen, K. A., Kaiser, K. F., Kromer, B., McCormac, F. G., Manning, S. W., Reimer, R. W., Richards, D. A., Southon, J. R., Talamo, S., Turney, C. S. M., van der Plicht, J., & Weyhenmeyer, C. E. ( 2009 ). IntCal09 and Marine09 radiocarbon age calibration curves, 0–50,000 years cal BP. Radiocarbon, 51 ( 04 ), 1111 – 1150. https://doi.org/10.1017/S0033822200034202; Ringham, M. C., Hoke, G. D., Huntington, K. W., & Aranibar, J. N. ( 2016 ). Influence of vegetation type and site‐to‐site variability on soil carbonate clumped isotope records, Andean piedmont of Central Argentina (32–34°S). Earth and Planetary Science Letters, 440, 1 – 11.; Romanek, C. S., Grossman, E. L., & Morse, J. W. ( 1992 ). Carbon isotopic fractionation in synthetic aragonite and calcite: Effects of temperature and precipitation rate. Geochimica et Cosmochimica Acta, 56, 419 – 430.; Sharp, Z. ( 2007 ). Principles of stable isotope geochemistry ( 1st ed.). Upper Saddle River, NJ: Pearson Education, Inc.; Snell, K. E., Thrasher, B. L., Eiler, J. M., Koch, P. L., Sloan, L. C., & Tabor, N. J. ( 2013 ). Hot summers in the Bighorn Basin during the early Paleogene. Geology, 41 ( 1 ), 55 – 58. https://doi.org/10.1130/G33567.1; Solomon, D. K., & Cerling, T. E. ( 1987 ). The annual carbon dioxide cycle in a montane soil: Observations, modeling, and implications for weathering. Water Resources Research, 23 ( 12 ), 2257 – 2265.; Stuvier, M., & Reimer, R. W. ( 1993 ). Extended 14 C database and revised CALIB radiocarbon calibration program. Radiocarbon, 35, 215 – 230.; Tipple, B. J., & Pagani, M. ( 2007 ). The early origins of terrestrial C₄ photosynthesis. Annual Review of Earth and Planetary Sciences, 35, 435 – 461.; Treadwell‐Steitz, C., & McFadden, L. D. ( 2000 ). Influence of parent material and grain size on carbonate coatings in gravelly soils, Palo Duro Wash, New Mexico. Geoderma, 94, 1 – 22.; Zhu, T., & Dittrich, Z. ( 2016 ). Carbonate precipitation through microbial activities in natural environment, and their potential in biotechnology: A review. Frontiers in Bioengineering and Biotechnology, 4, 1 – 21.; Cerling, T. E., Solomon, D. K., Quade, J., & Bowman, J. R. ( 1991 ). On the isotopic composition of carbon in soil carbon dioxide. Geochimica et Cosmochimica Acta, 55, 3403 – 3405.; Chadwick, O. A., & Davis, J. O. ( 1990 ). Soil‐forming intervals caused by eolian sediment pulses in the Lahontan basin, northwestern Nevada. Geology, 18, 243 – 246.; Bailey, C. M., Marchetti, D. W., & Harris, M. S. ( 2007 ). Geology and landscape history of the Fish Lake Plateau, Utah. In W. R. Lund (Ed.), Field guide to geologic excursions in southern Utah: Utah Geological Association Publication 35. s.l (pp. 1 – 25 ). Salt Lake City, UT: Utah Geological Association.; Balco, G., Stone, J. O., Lifton, N., & Dunai, T. J. ( 2008 ). A complete and easily accessible means of calculating surface exposure ages or erosion rates from 10 Be and 26 Al measurements. Quaternary Geochronology, 3, 174 – 195.; Belnap, J., & Phillips, S. L. ( 2001 ). Soil biota in an ungrazed grassland: Response to annual grass ( Bromus tectorum ) invasion. Ecological Applications, 11 ( 5 ), 1261 – 1275.; Belsky, A. J., & Blumenthal, D. M. ( 1997 ). Effects of livestock grazing on stand dynamics and soils in upland forests of the Interior West. Conservation Biology, 11 ( 2 ), 315 – 327.; Birkeland, P. W. ( 1999 ). Soils and geomorphology ( 3rd ed.). New York City: Oxford University Press.; Birkeland, P. W., Machette, M. N., & Haller, K. M. ( 1991 ). Soils as a tool for applied Quaternary geology (pp. 1 – 63 ). Salt Lake City, UT: Utah Geological and Mineral Survey, Volume Miscellaneous Publication 91–3.; Bonifacie, M., Calmels, D., Eiler, J. M., Horita, J., Chaduteau, C., Vasconcelos, C., Agrinier, P., Katz, A., Passey, B. H., Ferry, J. M., & Bourrand, J.‐J. ( 2017 ). Calibration of the dolomite clumped isotope thermometer from 25 to 350 °C, and implications for a universal calibration for all (Ca, Mg, Fe)CO₃ carbonates. Geochimica et Cosmochimica Acta, 200, 255 –279.; Bowling, D. R., Bethers‐Marchetti, S., Lunch, C. K., Grote, E. E., & Belnap, J. ( 2010 ). Carbon, water, and energy fluxes in a semi‐arid cold desert grassland during and following multi‐year drought. Journal of Geophysical Research, 115, G04026. https://doi.org/10.1029/2010JG001322; Bowling, D. R., Egan, J. E., Hall, S. J., & Risk, D. A. ( 2015 ). Environmental forcing does not induce diel or synoptic variation in carbon isotope content of forest soil respiration. Biogeosciences Discussions, 12, 6361 – 6404.; Bowling, D. R., Grote, E. E., & Belnap, J. ( 2011 ). Rain pulse response of soil CO₂ exchange by biological soil crusts. Journal of Geophysical Research, 116, G03028. https://doi.org/10.1029/2011JG001643; Breecker, D. O., Sharp, Z. D., & McFadden, L. D. ( 2009a ). Atmospheric CO₂ concentrations during ancient greenhouse climates were similar to those predicted for A.D. 2100. Proceedings of the National Academy of Sciences, 107, 576 – 580.; Breecker, D. O., Sharp, Z. D., & McFadden, L. D. ( 2009b ). Seasonal bias in the formation and stable isotopic composition of pedogenic carbonate in modern soils from central New Mexico, USA. Geological Society of America Bulletin, 121, 630 – 640.; Burgener, L., Huntington, K. W., Hoke, G. D., Schauer, A., Ringham, M. C., Latorre, C., & Díaz, F. P. ( 2016 ). Variations in soil carbonate formation and seasonal bias over >4 km of relief in the western Andes (30°S) revealed by clumped isotope thermometry. Earth and Planetary Science Letters, 441, 188 – 199. https://doi.org/10.1016/j.epsl.2016.02.033; Cerling, T., Quade, J., & Bowman, J. ( 1989 ). Carbon isotopes in soils and paleosols as ecologic and paleoecologic indicators. Nature, 341, 138 – 139.; Cerling, T. E. ( 1984 ). The stable isotopic composition of modern soil carbonate and its relationship to climate. Earth and Planetary Science Letters, 71, 229 – 240.; Cerling, T. E., & Harris, J. M. ( 1999 ). Carbon isotope fractionation between diet and bioapatite in ungulate mammals and implications for ecological and paleoecological studies. Oecologia, 120, 347 – 363.; Chambers, J. C., Germino, M. J., Belnap, J., Brown, C., Schupp, E. W., & St. Clair, S. B. ( 2016 ). Plant community resistance to invasion by Bromus species: The roles of community attributes, Bromus interactions with plant communities and Bromus traits. In M. Germino, J. Chambers & C. Brown (Eds.), Exotic brome‐grasses in arid and semiarid ecosystems of the Western U.S, Springer Series on Environmental Management. s.l (pp. 275 – 303 ). Cham: Springer.; Coats, L. L., Cole, K. L., & Mead, J. I. ( 2008 ). 50,000 years of vegetation and climate history on the Colorado Plateau, Utah and Arizona, USA. Quaternary Research, 70, 322 – 338.; Cole, K. L., Henderson, N., & Shafer, D. S. ( 1997 ). Holocene vegetation and historic grazing impacts at Capitol Reef National Park reconstructed using packrat middens. Great Basin Naturalist, 57 ( 4 ), 315 – 326.; Defliese, W. F., Hren, M. T., & Lohmann, K. C. ( 2015 ). Compositional and temperature effects of phosphoric acid fractionation on Δ₄₇ analysis and implications for discrepant calibrations. Chemical Geology, 396, 51 – 60.; Dennis, K. J., Affek, H. P., Passey, B. H., Schrag, D. P., & Eiler, J. M. ( 2011 ). Defining an absolute reference frame for ‘clumped’ isotope studies of CO2. Geochimica et Cosmochimica Acta, 75 ( 22 ), 7117 – 7131. https://doi.org/10.1016/j.gca.2011.09.025; Drever, J. I. ( 1988 ). The geochemistry of natural waters ( 2nd ed.). Englewood Cliffs, NJ: Prentice Hall.; Ehleringer, J. R., & Monson, R. K. ( 1993 ). Evolutionary and ecological aspects of photosynthetic pathway variation. Annual Review of Ecology and Systematics, 24, 411 – 439.; Eiler, J. ( 2007 ). “Clumped‐isotope” geochemistry—The study of naturally‐occurring, multiply‐substituted isotopologues. Earth and Planetary Science Letters, 262, 309 – 327.; Gallagher, T. M., & Sheldon, N. D. ( 2016 ). Combining soil water balance and clumped isotopes to understand the nature and timing of pedogenic carbonate formation. Chemical Geology, 435, 79 – 91.; Gazis, C., & Feng, X. ( 2004 ). A stable isotope study of soil water: evidence for mixing and preferential flow paths. Geoderma, 119, 97 – 111.; Ghosh, P., Adkins, J., Affek, H., Balta, B., Guo, W., Schauble, E. A., Schrag, D., & Eiler, J. M. ( 2006 ). 13 C– 18 O bonds in carbonate minerals: A new kind of paleothermometer. Geochimica, 70 ( 6 ), 1439 – 1456. https://doi.org/10.1016/j.gca.2005.11.014; Gile, L. H., Peterson, F. F., & Grossman, R. B. ( 1996 ). Morphological and genetic sequences of carbonate accumulation in desert soils. Soil Science, 101, 347 – 360.; Goehring, B. M., Kurz, M. D., Balco, G., Schaefer, J. M., Licciardi, J., & Lifton, N. ( 2010 ). A reevaluation of in situ cosmogenic 3 He production rates. Quaternary Geochronology, 5 ( 4 ), 410 – 418. https://doi.org/10.1016/j.quageo.2010.03.001; Henkes, G. A., Passey, B. H., Wanamaker, A. D. Jr., Grossman, E. L., Ambrose, W. G. Jr., & Carroll, M. L. ( 2013 ). Carbonate clumped isotope compositions of modern marine mollusk and brachiopod shells. Geochimica et Cosmochimica Acta, 106, 307 – 325. https://doi.org/10.1016/j.gca.2012.12.020; Higgins, R. W., Yao, Y., & Wang, X. L. ( 1997 ). Influence of the North American Monsoon system on the U.S. summer precipitation regime. Journal of Climate, 10, 2600 – 2622.; Holmgren, C. E., Norris, J., & Betancourt, J. L. ( 2007 ). Inferences about winter temperatures and summer precipitation from the Late Quaternary record of C₄ perennial grasses and C₃ desert shrubs in the northern Chihuahuan Desert. Journal of Quaternary Science, 22 ( 2 ), 141 – 161.; Hough, B. G., Fan, M., & Passey, B. H. ( 2014 ). Calibration of the clumped isotope geothermometer in soil carbonate in Wyoming and Nebraska, USA: Implications for paleoelevation and paleoclimate reconstruction. Earth and Planetary Science Letters, 391, 110 – 120.; Kim, S.‐T., & O’Neil, J. R. ( 1997 ). Equilibrium and non‐equilibrium oxygen isotope effects in synthetic carbonates. Geochimica et Cosmochimica Acta, 61 ( 16 ), 3461 – 3475.; Lifton, N., Sato, T., & Dunai, T. J. ( 2014 ). Scaling in situ cosmogenic nuclide production rates using analytical approximations to atmospheric cosmic‐ray fluxes. Earth and Planetary Science Letters, 386, 149 – 160.; Lisiecki, L. E., & Raymo, M. E. ( 2005 ). A Pliocene‐Pleistocene stack of 57 globally distributed benthic δ 18 O records. Paleoceanography, 20, PA1003. https://doi.org/10.1029/2004PA001071; Marchetti, D. M. ( 2006 ). Quaternary geology of the Fremont River drainage basin, Utah. (PhD thesis, pp. 1–186).; Marchetti, D. W., Cerling, T. E., Dohrenwend, J. C., & Gallin, W. ( 2007 ). Ages and significance of glacial and mass movement deposits on the west side of Boulder Mountain, Utah, USA. Palaeogeography Palaeoclimatology Palaeoecology, 252, 503 – 513.

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    المساهمون: Irish Research Council for Science, Engineering and Technology

    المصدر: Rapid Communications in Mass Spectrometry ; volume 29, issue 15, page 1357-1369 ; ISSN 0951-4198 1097-0231

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    المصدر: Earth and Planetary Science Letters, 185(1-2), 7-14, (2001-02-15)

    Relation: eprintid:35432

    الاتاحة: https://doi.org/10.1016/S0012-821X(00)00360-5