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    李亮, 蒋少涌. 钙同位素地球化学研究进展[J]. 中国地质, 2008, 35(6): 1088-1100.
    引用本文: 李亮, 蒋少涌. 钙同位素地球化学研究进展[J]. 中国地质, 2008, 35(6): 1088-1100.
    LI Liang, JIANG Shao-yong. Advance in calcium isotope geochemistry[J]. GEOLOGY IN CHINA, 2008, 35(6): 1088-1100.
    Citation: LI Liang, JIANG Shao-yong. Advance in calcium isotope geochemistry[J]. GEOLOGY IN CHINA, 2008, 35(6): 1088-1100.

    钙同位素地球化学研究进展

    Advance in calcium isotope geochemistry

    • 摘要: 提要:钙同位素是非传统稳定同位素,近年来已成为国际同位素地球化学领域的研究热点。钙同位素测定采用TIMS或MC-ICP-MS,并表示为δ44/40Ca或δ44/42Ca。自然界的δ44/40Ca变化范围从-2.0‰到2.0‰,仅跨越4.0‰。虽然动力学分馏与平衡分馏假说能各自解释一些分馏现象,但钙同位素分馏机理仍不清晰,值得进一步研究。目前钙同位素的地质应用集中于以下方面:(1)根据有孔虫G. sacculifer的钙同位素组成重建古海洋温度;(2)海洋中钙的地球化学循环;(3)利用海水Ca2+评估大气pCO2。

       

      Abstract: Abstract:Calcium isotope, one of non-traditional stable isotopes, has been a research hotspot in isotope geochemistry field since the last decade. Calcium isotope ratios are widely measured by TIMS or MC-ICP-MS, and are expressed as δ44/40Ca or δ44/42Ca respectively. Variations of δ44/40Ca in nature are mainly from -2.0‰ to 2.0‰, spanning only a limited range of 4.0‰. The hypotheses of kinetic and equilibrium fractionation can interpret some of calcium isotope fractionation observations, but more work is needed to better understand the fractionation mechanism. Up to now the geological application of calcium isotope includes:(1)Paleoceanography temperature reconstruction based on δ44/40Ca of planktonic foraminifera G. sacculifer;(2) Geochemical cycling of calcium in ocean;(3)Estimation of pCO2 in terms of seawater calcium concentration.

       

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