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GLOBAL AND HEMISPHERIC CO2 SINKS DEDUCED FROM CHANGES IN ATMOSPHERIC O-2 CONCENTRATION

机译:大气O-2浓度变化导致的全球和半球形二氧化碳排放量

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摘要

THE global budget for sources and sinks of anthropogenic CO2 has been found to be out of balance unless the oceanic sink is supplemented by an additional 'missing sink', plausibly associated with land biota(1,25). A similar budgeting problem has been found for the Northern Hemisphere alone(2,3), suggesting that northern land biota may be the sought-after sink, although this interpretation is not unique(2-5); to distinguish oceanic and land carbon uptake, the budgets rely variously, and controversially, on ocean models(2,6,7), (CO2)-C-13/(CO2)-C-12 data(2,4,5), sparse oceanic observations of p(CO2) (ref. 3) or C-13/C-12 ratios of dissolved inorganic carbon, (4,5,8) or single-latitude trends in atmospheric O-2 as detected from changes in O-2/N-2 ratio.(9,10). Here we present an extensive O-2/N-2 data set which shows simultaneous trends in O-2/N-2 in both northern and southern hemispheres and allows the O-2/N-2 gradient between the two hemispheres to be quantified. The data are consistent with a budget in which, for the 1991-94 period, the global oceans and the northern land biota each removed the equivalent of approximately 30% of fossil-fuel CO2 emissions, while the tropical land biota as a whole were not a strong source or sink. [References: 34]
机译:除非人为地汇聚了可能与陆地生物区系相关的额外“漏汇”,否则人为二氧化碳源和汇的全球预算被发现是不平衡的(1,25)。仅在北半球也发现了类似的预算问题(2,3),这表明尽管这种解释并非唯一(2-5),但北部陆地生物群可能是人们追捧的汇。为了区分海洋和陆地的碳吸收量,预算有赖于海洋模型(2,6,7),(CO2)-C-13 /(CO2)-C-12数据(2,4,5),并且存在争议,稀疏海洋观测的p(CO2)(参考文献3)或溶解的无机碳的C-13 / C-12比值,大气中O-2的(4、5、8)或单纬度趋势,从O-2 / N-2比率(9,10)。在这里,我们提供了一个广泛的O-2 / N-2数据集,该数据集显示了北半球和南半球O-2 / N-2的同时趋势,并且可以量化两个半球之间的O-2 / N-2梯度。这些数据与预算相符,其中在1991-94年期间,全球海洋和北部陆地生物区系各自清除了大约30%的化石燃料二氧化碳排放量,而整个热带陆地生物区系并未清除一个强大的来源或汇。 [参考:34]

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