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首页> 外文期刊>Australian Journal of Botany >Validating putatively cross-dated Callitris tree-ring chronologies using bomb-pulse radiocarbon analysis.
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Validating putatively cross-dated Callitris tree-ring chronologies using bomb-pulse radiocarbon analysis.

机译:使用炸弹脉冲放射性碳分析验证推定的 Callitris 树年轮年代。

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Nuclear weapons testing during the 1950s generated an atmospheric pulse of the carbon isotope, 14C. Worldwide, trees growing during that period and in subsequent decades assimilated 14C-enriched CO2, leaving a distinct isotopic signature that can be used to precisely date tree rings. Thirty single-ring samples were extracted for AMS 14C analysis from cores taken from living trees of five different Callitris species [C. endlicheri (Parl.) F.M. Bailey, C. glaucophylla Joy Thomps. & L.A.S. Johnson, C. intratropica Benth., C. preissii Miq., and C. rhomboidea R.Br. ex Rich. & A. Rich] at 13 sites. The ages of individual tree rings were determined by both 14C bomb-pulse dating and cross-dating (based on 20-30 cores from the same site) in order to (1) provide independent verification of tree-ring dates, (2) detect false or missing rings from sites with otherwise good chronologies, and (3) test whether growth rings were annual for cores from sites where cross-dating was not possible. Our approach confirmed dates on chronologies from monsoon tropical sites, provided checked chronologies in subtropical and temperate sites, and improved dating control on arid-zone ring counts. It was found that Callitris are more likely to form regular annual rings when growing in seasonally dry environments than in more arid sites with highly variable precipitation patterns.
机译:1950年代进行的核武器测试产生了大气中碳同位素 14 C的脉冲。在世界范围内,在此期间和随后的几十年中生长的树木吸收了富含 14 C的CO 2 ,留下了独特的同位素特征,可用于精确确定年轮。从五种不同的Callitris物种[ C]的活树中提取的核心提取了30个单环样品,用于AMS 14 C分析。 endlicheri (Parl。)F.M.贝利,C。青叶 Joy Thomps。 &L.A.S.约翰逊,C。 intratropica Benth。, C。 preissii Miq。和 C。菱形 R.Br。前富人。 &A. Rich]在13个网站上。单个树环的年龄由 14 C炸弹脉冲测年和交叉约会(基于来自同一站点的20-30个核)确定,以便(1)提供树木的独立验证-环日期,(2)从其他时间顺序良好的站点中检测出假环或缺失环,(3)测试不可能进行交叉约会的站点的核心是否为年轮。我们的方法确定了季风热带地区的年代,提供了亚热带和温带地区的经过检验的年代,并改善了干旱带环数的年代控制。研究发现,在季节性干燥的环境中生长的 Callitris 更有可能形成规则的年轮,而不是在降水量变化较大的干旱地区。

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