Libby L M, Pandolfi L J. Temperature dependence of, isotope ratios in tree rings. Proceedings of the National Academy of Science, 1974, 71: 2482~2486.
[2]
Libby L M, Pandolfi L J, Payton P H, Marshall III J, Becker B. Giertz- Siebenlist, V., Isotopic tree thermometers. Nature, 1976, 261: 284~290.
[3]
White J W C. Stable hydrogen isotope ratios in plants: a review of current theory and some potential application, in Stable Isotopes in Ecological Research, W. Rundel, Ehleringer J R, Nagy K A, Editor. 1988, Springer~Verlag, 142~162.
[4]
Stuiver M, Braziunas T F. Tree cellulose 13C12C isotope ratios and climate change. Nature, 1987, 328: 58~60.
Gray J, Thompson. Natural variations in the 18O content of cellulose. in Carbon Dioxide Effects: Research and Assessment Program, Proceedings of the International Meeting on Stable Isotopes in Tree- ring Research. 1980, New York.
[9]
Hayes J M. An introduction to isotopic measurements and terminology. Spectr, 1982, 8: 3~8.
[10]
Gray J, Song S J. Climatic implications of the natural variations of D/H ratios in tree ring cellulose. Earth Planet Sci Lett, 1984, 70: 129~138.
[11]
Edwards T W D, Aravena RO, Fritz. Interpreting paleoclimate from 18O and 2H in wood cellulose: comparison with evidence from fossil insects and relict permafrost in Southwester Ontario. Can J Earth Sci, 1985, 22: 1720~1726.
[12]
Sternberg L, De Niro M, Savidge R. Oxygen isotope exchange between metabolites and water during biochemical reactions leading to cellulose synthesis. Plant Physiology, 1986, 82: 423~427.
White J W C, Lawrence J R, Broecker WS. Modeling and interpreting D/H ratios in tree rings: A test case of white pine in the northwestern United States. 1994, 58: 851~862.
[15]
Barbour MM, Andrews T J, Farquhar G D. Correlations between oxygen isotope ratios of wood constituents of Quercus and Pinus samples from around the world. Australian Journal of Plant Physiology, 2001, 28: 335~348.
[16]
Anderson W T, Bernasconi S M, McKenzie J A, Saurer M, Schweingruber F. Model evaluation for reconstructing the oxygen isotopic composition in precipitation from tree ring cellulose over the last century. Chemical Geology, 2002, 182: 121~137.
[17]
Feng X, Cui H, Tang K, Conkey L E. Tree- Ring δD as an indicator of Asian monsoon intensity. Quaternary Research, 1999, 51: 262~266.
[18]
Barbour M M, Walcroft A S, Farquhar G D. Seasonal variation in δ13C and δ18O of cellulose from growth rings of Pinus radiata. Plant, Cell and Environment, 2002, 25: 1483~1499.
[19]
Farquhar G D, Lloyd J. Carbon and oxygen isotope effects in the exchange of carbon dioxide between terrestrial plants and the atmosphere, in Stable Isotopes and Plant Carbon–Water Relations, J.R. Ehleringer, Hall, A.E., Farquhar, G.D., Editor. 1993, Academic Press: New York, 47~70.
[20]
Wershaw RL. Hydrogen isotope fractionation in water passing through trees, in Advances in Organic Geochemistry, F. Hobson, Speers, M., Editor. 1966, Pergamon: New York, 55~67.
[21]
Saurer M, Robertson I, Siegwolf R, Leuenberger M. Oxygen isotope analysis of cellulose: an interlaboratory comparison. Analytical Chemistry, 1998a, 70: 2074~2080.
[22]
Ehleringer J R, Dawson T E. Water uptake by plants: perspectives from stable isotope composition. Plant Cell Environment, 1992, 15: 1073~1082.
[23]
Yapp C J, Epstein S. A reexamination of cellulose carbon- bound hydrogen δD measurements and some factors affecting plant water D/H relationships. Geochimica et Cosmochimica Acta, 1982, 46: 955~965.
[24]
Leavitt S W, Long A. An atmospheric δ13C reconstruction generated through removal of climate effects from tree - ring measurements. Tellus, 1983, 65(87~89).
[25]
Lawrence J R, White J W. Growing season precipitation from D/H ratios of Eastern White Pine. Nature, 1984, 311: 558~ 560.
[26]
Feng X, Epstein S. Climatic trends from isotopic records of tree rings: the past 100~200 years. Climatic Change, 1996, 33: 551~562.
[27]
Epstein S, Mayeda T. Variation of 18O content of waters from natural sources. Geochimica et Cosmochimica Acta, 1953, 4 (5): 213~224.
[28]
郑永飞, 陈江峰, 稳定同位素地球化学. 北京: 科学出版社, 2000, 146~152.
[29]
吴祥定, 树木年轮与气候变化. 北京: 气象出版社, 1999.
[30]
McCarroll D, Loader N J. Stable istopes in tree rings. Quaternary Science Reviews, 2004, 23: 771~801.
[31]
Farmer J G, Baxter MS. Atmosphere carbon dioxide levels as indicated by the stable isotope record in wood Nature, 1974, 247: 273~275.
[32]
Francey R J, Allison CE, Etheridge D M. A 100- year high precision record of δ13C in atmospheric CO2. Tellus, 1999, 51B: 170~193.
[33]
Schiegl W E. Climatic significance of deuterium abundance in growth rings of Picea. Nature, 1974, 256: 582~585.
[34]
Epstein S, Yapp C J. Climatic implication of the D/H ratio of hydrogen in C- H groups in tree cellulose. Earth Planet Sci Lett, 1976, 30: 252~261.
[35]
Gray J, Thompson P. Climatic information from 18O/16O ratios of cellulose in tree- rings. Nature, 1976, 262: 481~482.
[36]
Pearman G I, Francey R J, Franser P J B. Climatic implications of stable isotopes in tree rings. Nature, 1976, 260 (771~ 773).
[37]
Dawson T E, Mambelli S, Plamboeck A H, Templer P H, Kevin P T. Stable isotopes in plant ecology. Annu. Rev. Ecol. Syst., 2002, 33: 507~559.
[38]
Sternberg L S L. Oxygen and hydrogen isotopes in plant cellulose: mechanisms and application, in Stable Isotopes in Ecological Research. 1989, Springer: New York, 124 ~141.
[39]
Saurer M, Siegwolf R, Borella S, Schweingruber F. Environmental information from stable isotopes in tree rings of Fagus sylvatica, in The Impacts of Climate Variability on Forests, M. Beniston, Innes, J.L., Editor. 1998, Springer: Berlin. 241~ 253.
[40]
Roden J S, Lin G, Ehleringer J R. A mechanistic model for interpretation of hydrogen and oxygen isotope ratios in treering cellulose. Geochimica et Cosmochimica Acta, 2000, 64: 21~35.
[41]
Lipp J T , Fritz. Stable isotopes in tree ring cellulose and climatic change. Tellus, 1991, 43B: 320~330.
Farquhar G D, O'Leary M H, Berry J A. On the relationship between carbon isotope discrimination and intercellular carbon dioxide concentration in leaves. Australian Journal of Plant Physiology, 1982, 9: 121~137.
[46]
White J W C, Cook E R, Lawrence J R. The D/H ratios of sap in trees: implications for water sources and tree ring D/H ratios. Geochim Cosmochim Acta, 1985, 49(1): 237~246.
[47]
Leavitt S W, Long A. Trends of 13C/12C ratios in pinyon tree rings of the American southwest and the global carbon cycle. Radiocarbon, 1986, 28: 376~382.
[48]
Saurer M, Siegenthaler V. 13C/12C isotope ratios in trees are senstive to relative humidity. Dendrochronologia, 1989, 7:9~13.
[49]
Tang K, Feng X, GreGory J Ettl. The variations in δD of tree rings and the implications for climatic reconstruction. Geochimical et Cosmochimica Acta, 2000, 60: 1663~1673.
[50]
DeNiro M J, Epstein S. Relationship between oxygen isotope ratios of terrestrial plant cellulose, carbon dioxide and water. 1979.
Craig H, Gordon L I. Deuterium and oxygen - 18 variations in the ocean and marine atmospheres, in Proceedings of a Conference on Stable Isotopes in Oceanographic Studies and Palaeotemperatures, E. Tongiorgi, Editor. Lischi and Figli, Pisa: Italy, 1965, 9~130.
[53]
Dongmann G, Nornberg, H W, Forstel H, Wagener K. On the enrichment of H2 18O in leaves of transpiring plants. Radiation, Environment and Biophysiology, 1974, 11: 41~52.
[54]
Mazany T, Leman J C, Long A. Carbon- 13 in tree ring cellulose as an indicator of past climates. Nature, 1980, 187: 432~ 435.
[55]
Hemming D L, Switsur V R, Waterhouse J S. Climate variation and the stable carbon isotope composition of tree - ring cellulose: an intercomparison of Quercus robur, Fagus sylvatica and Pinus silvestris. Tellus, 1998, 50B: 25~33.
[56]
Freyer H D, Belacy N. 13C/12C records in northern hemispheric trees during the past 500 years- anthropogenic impact and climatic superpositions. J. Geophys. Res, 1983, 88: 6844~6852.
[57]
Saurer M, Siegenthaler V. The climate- carbon isotope relationship in tree rings and the significance of site conditions. Tellus, 1995, 47B: 320~330.
[58]
Ramesh R, Bhattacharya S K, Gopalan K. Climatic correlations in the stable isotope records of silver fir (A biespind row) tree from Kashmir, India. Earth Planet Sci Lett, 1986, 79: 66~74.
[59]
Craig H. Carbon- 13 variations in Sequoia rings and the atmosphere. Science, 1954, 119: 141~144.
[60]
Friedli H, Lotscher H, Stauffer B. Ice core record of the 13C/12C ratio of atmospheric CO2 in the past two centuries. Nature, 1986, 324: 237~238.