基于银杏类化石Baiera furcata气孔参数定量 重建中生代古大气CO2浓度变化
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本文为国家重点基础研究发展计划“973”项目(编号2012CB822003)、国家自然科学基金基金资助项目(编号41172022)、高等学校博士学科点专项科研基金资助项目(编号20120211110022)的成果。


Quantitative Reconstruction of Mesozoic Paleoatmospheric CO2 Based on Stomatal Parameters of Fossil Baiera furcata of Ginkgophytes
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    摘要:

    大气CO2与地球温室气候变化有密切的关系,化石植物气孔参数已被证明是一种较精确重建古大气CO2的生物指标。从甘肃下侏罗统大西沟组、中侏罗统窑街组和内蒙古霍林河下白垩统霍林河组采集了角质层保存完好的B. furcata,对其表皮构造进行了细致分析,详细统计了该种下表皮的气孔参数。应用B. furcata与它最近现存亲缘种Ginkgo biloba的气孔比率,定量重建了早侏罗世Toarcian、中侏罗世Aalenian和Bajocian以及早白垩世Hauterivian的古大气CO2浓度,它们分别是(1263±71)×10﹣6、(1388±24)×10﹣6、(1599±31)×10-6和(1899±198)×10﹣6,结果与Berner全球碳平衡模型GEOCARB I—Ⅲ中CO2浓度变化曲线吻合,证明B. furcata是恢复古大气CO2浓度的良好生物指标。结合我们以前利用陆生植物恢复中生代古大气CO2浓度的结果,发现恢复的中生代大气CO2值均在GEOCARB I—Ⅲ模型中的低值区内,据此推测中生代陆相环境大气CO2要低于海相环境的值。此外,在各地的B. furcata下表皮中均发现了气孔簇,认为这是B. furcata对环境适应的结果。

    Abstract:

    Atmospheric CO2 concentration is closely related to the climatic change of the Earth greenhouse. A stomatal parameter of fossil plants has been proved as an effective biological indicator of reconstructing paleo CO2. Well preserved fossil specimens of Baiera furcata were collected from the Lower Jurassic Daxigou Formation of the Agan Town, the Middle Jurassic Yaojie Formation of the Lanzhou City, Gansu Province and the Lower Cretaceous Huolinhe Formation of the Huolinhe Basin, Inner Mongolia. The epidermal characteristics of the present specimens were analyzed, and the stomatal parameters were calculated. According to the stomatal parameters of Baiera furcata and the nearest living relative specie Ginkgo biloba, the paleo CO2 of the late Early Jurassic, the early and middle Middle Jurassic and the early Early Crecateous were quantitatively reconstructed at about (1263±71)×10-6、(1388±24)×10-6、(1599±31)×10-6 and (1899±198)×10-6. This result coincides with the CO2 curve of global carbon balance model (GEOCARB I—Ⅲ), which indicates that B. furcata is a good biological indicator for reconstructing the paleo CO2. Combining with the result of the Mesozoic paleo CO2 values obtained by other terrestrial plants, it is found that all the estimated values are lower than the values of GEOCARB I—Ⅲ. It can be deduced that the terrestrial atmospheric CO2 concentration was lower than the marine CO2 level in the Mesozoic. In addition, stomatal cluster can be found on the lower epidermis of B. furcata, which was the result of adaption to the environment.

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王秋军,徐小慧,金培红,李瑞云,李小强,孙柏年.2013.基于银杏类化石Baiera furcata气孔参数定量 重建中生代古大气CO2浓度变化[J].地质论评,59(6):1035-1045,[DOI].
.2013. Quantitative Reconstruction of Mesozoic Paleoatmospheric CO2 Based on Stomatal Parameters of Fossil Baiera furcata of Ginkgophytes[J]. Geological Review,59(6):1035-1045.

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  • 收稿日期:2012-08-15
  • 最后修改日期:2012-12-31
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  • 在线发布日期: 2013-11-14
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