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005     20210129215639.0
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024 7 _ |a 2162-4585
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082 _ _ |a 580
100 1 _ |a Fichtler, Esther
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245 _ _ |a Stable-Carbon Isotope Time Series from Tropical Tree Rings Indicate a Precipitation Signal
260 _ _ |a Tucson, Ariz.
|c 2010
|b Tree-Ring Society with the cooperation of the Laboratory of Tree-Ring Research, the University of Arizona
336 7 _ |a Journal Article
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336 7 _ |a article
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520 _ _ |a Although studies on stable-carbon isotopes in trees from temperate zones provide abundant paleoclimatic data, tropical trees are still understudied in this context. Therefore this study examined the variability of intra- and inter-annual stable-carbon isotopic pattern in several tree species from various tropical climates. The δ13C values of samples of 12 broadleaved trees (seven species) from various paleotropical and neotropical sites along a climatic moisture gradient were investigated. The inter-annual variability between species and sites was studied. Further the relationship between δ13C and precipitation time series was analyzed. Results show that tropical tree species show a similar variability in carbon isotopic composition as temperate tree species. Significant correlations between annual precipitation and tree-ring δ13C time series were negative. Successful crossdating of a tree-ring δ13C time series highlights the potential of carbon isotope measurements for tropical tree-ring analytical studies. Tropical broadleaved trees are able to capture a carbon isotopic signal in their annual rings even under everwet conditions and show good potential for paleoclimatic research.
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700 1 _ |a Helle, Gerhard
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700 1 _ |a Worbes, Martin
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773 _ _ |a 10.3959/2008-20.1
|g Vol. 66, no. 1, p. 35 - 49
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|t Tree-ring research
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|x 1536-1098
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