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碳酸盐风化碳汇与森林碳汇的对比——碳汇研究思路和方法变革的必要性

刘再华 WolfgangDreybrodt

刘再华, WolfgangDreybrodt. 碳酸盐风化碳汇与森林碳汇的对比——碳汇研究思路和方法变革的必要性[J]. 中国岩溶, 2012, 31(4): 345-348. doi: 10.3969/j.issn.1001-4810.2012.04.001
引用本文: 刘再华, WolfgangDreybrodt. 碳酸盐风化碳汇与森林碳汇的对比——碳汇研究思路和方法变革的必要性[J]. 中国岩溶, 2012, 31(4): 345-348. doi: 10.3969/j.issn.1001-4810.2012.04.001
LIU Zai-hua, Wolfgang Dreybrodt. Comparison of carbon sequestration capacity between carbonate weathering and forests: The necessity to change traditional ideas and methods of study of carbon sinks[J]. CARSOLOGICA SINICA, 2012, 31(4): 345-348. doi: 10.3969/j.issn.1001-4810.2012.04.001
Citation: LIU Zai-hua, Wolfgang Dreybrodt. Comparison of carbon sequestration capacity between carbonate weathering and forests: The necessity to change traditional ideas and methods of study of carbon sinks[J]. CARSOLOGICA SINICA, 2012, 31(4): 345-348. doi: 10.3969/j.issn.1001-4810.2012.04.001

碳酸盐风化碳汇与森林碳汇的对比——碳汇研究思路和方法变革的必要性

doi: 10.3969/j.issn.1001-4810.2012.04.001
基金项目: 国家重大科学研究计划项目(2013CB956700);中国科学院战略性科技先导专项重大课题(XDA05070400)

Comparison of carbon sequestration capacity between carbonate weathering and forests: The necessity to change traditional ideas and methods of study of carbon sinks

  • 摘要: 目前,全球碳循环研究主要集中在海洋碳汇以及陆地土壤和植被碳汇,而对岩石风化碳汇仅考虑地质长时间尺度的硅酸盐风化作用,而认为碳酸盐风化在长时间尺度上对碳汇无贡献。然而,碳酸盐相对于硅酸盐有快得多的溶解速度,且对全球变化(特别是气候和CO2变化)的响应迅速,同时由于生物作用和人为活动的影响,使得碳酸盐风化碳汇的能力需要重新评价。最新的研究发现,由碳酸盐溶解、全球水循环及水生生物光合利用溶解无机碳共同作用,即水-岩-气-生相互作用形成的大气碳汇,远远大于之前只估计了河流输运的无机碳汇,其量级与森林碳汇量相当,因此有必要对传统的碳汇研究思路和方法进行某些变革,这有可能为解决所谓的全球“碳失汇”问题找到一条出路。

     

  • [1] Melnikov N B, O’Neill B C. Learning about the carbon cycle from global budget data[J]. Geophys Res Lett, 2006, 33: L02705.
    [2] Berner R A, Lasaga A C, Garrels R M. The carbonate-silicate geochemical cycle and its effect on atmospheric carbon-dioxide over the past 100million years[J]. AmJSci,1983,283:641-683.
    [3] Liu Z, Dreybrodt W, Liu H. Atmospheric CO2 sink: Silicate weathering or carbonate weathering?[J]. Appl Geochem,2011,26:292-294.
    [4] Liu Z, Zhao J. Contribution of carbonate rock weathering to the atmospheric CO2 sink[J]. Environ Geol,2000,39:1053-1058.
    [5] LiuZ, Li Q, Sun H, et al. Seasonal, diurnal and storm-scale hydrochemical variations o ftypical epikarst springs in subtropical karst areas of SW China: soil CO2 and dilution effects[J]. J Hydrol, 2007, 337:207-223.
    [6] Macpherson G L, Roberts J A, Blair J M. Increasing shallow groundwater CO2 and limestone weathering, Konza Prairie, USA[J]. Geochim Cosmochim Acta,2008,72:5581-5599.
    [7] 刘再华,Dreybrodt W,王海静.一种由全球水循环产生的可能重要的CO2汇[J].科学通报,2007,52:2418-2422.
    [8] Liu Z, Dreybrodt W, Wang H. A new direction in effective accounting for the atmospheric CO2 budget: Considering the combined action of carbonate dissolution, the global water cycle and photosynthetic uptake of DIC by aquatic organisms[J]. Earth-SciRev,2010,99:162-172.
    [9] 刘再华.岩石风化碳汇研究的最新进展和展望[J].科学通报,2012,57:95-102.
    [10] Meybeck M. Riverine transport of atmospheric carbon: Sources, global typology and budget[J]. Water Air Soil Poll,1993,70:443-463.
    [11] Gaillardet J, Dupre B, Louvat P, et al. Global silicate weathering and CO2 consumption rates deduced from the chemistry of large rivers[J]. Chem Geol,1999,159:3-30.
    [12] Pan Y, Birdsey R A, Fang J, et al. A large and persistent carbon sink in the world’s forests[J]. Science, 2011,333:988-993.
    [13] 蒋忠诚,裴建国,夏日元,等.我国“十一五”期间的岩溶研究进展与重要活动[J].中国岩溶,2010,29:349-354.
    [14] Waterson E J, Canuel E A. Sources of sedimentary organic matter in the Mississippi River and adjacent Gulf of Mexicoas revealed by lipid biomarker and δ13CTOC analyses[J]. Org Geochem, 2008, 39:422-439.
    [15] 方精云,郭兆迪,朴世龙,等.1981—2000年中国陆地植被碳汇的估算[J].中国科学(D辑),2007,37:804-812.
    [16] Raymond P A, Oh N H, Turner R E, Broussard W. Anthropogenically enhanced fluxes of water and carbon from the Mississippi River[J]. Nature,2008,451:449-452.
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  • 收稿日期:  2012-10-10
  • 发布日期:  2012-12-25

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