Trends of 13 C/ 12 C Ratios in Pinyon Tree Rings of the American Southwest and the Global Carbon Cycle

  • Leavitt S
  • Long A
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Abstract

An accurate atmospheric 13 C/ 12 C chronology can provide important constraints to models of the global carbon cycle. Trees accumulate carbon from atmospheric CO 2 into growth rings and offer potential for 13 C/ 12 C reconstructions, but results have not been reproducible. This paper presents δ 13 C curves from 5 sites, representing 20 pinyon ( Pinus edulis ) trees, where cores of 4 trees from each site have been pooled into a composite sample. Isotopic analysis of cellulose in 5-yr ring groups produces curves with a general trend of decreasing δ 13 C after 1800, but with pronounced short-term fluctuations superimposed upon the trend. Evidence indicates the fluctuations are strongly related to moisture availability (drought). A mean curve of the 5 δ 13 C chronologies from which the fossil-fuel component is subtracted suggests a substantial biospheric CO 2 contribution to the atmosphere since 1800.

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Leavitt, S. W., & Long, A. (1986). Trends of 13 C/ 12 C Ratios in Pinyon Tree Rings of the American Southwest and the Global Carbon Cycle. Radiocarbon, 28(2A), 376–382. https://doi.org/10.1017/s0033822200007487

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