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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >A THREE-DIMENSIONAL SYNTHESIS STUDY OF DELTA-O-18 IN ATMOSPHERIC CO2 .2. SIMULATIONS WITH THE TM2 TRANSPORT MODEL
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A THREE-DIMENSIONAL SYNTHESIS STUDY OF DELTA-O-18 IN ATMOSPHERIC CO2 .2. SIMULATIONS WITH THE TM2 TRANSPORT MODEL

机译:大气CO2中δ-O-18的三维合成研究2。使用TM2运输模型进行仿真

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In this study, using a three-dimensional (3-D) tracer modeling approach, we simulate the delta(18)O of atmospheric CO2. In the atmospheric transport model TM2 we prescribe the surface fluxes of O-18 due to vegetation and soils, ocean exchange, fossil emissions, and biomass burning. The model simulations are first discussed for each reservoir separately, then all the reservoirs are combined to allow a comparison with the atmospheric delta(18)O measurements made by the National Oceanic and Atmospheric Administration-University of Colorado, Scripps Institution of Oceanography-Centrum Voor Isotopen Onderzoek (United States-Netherlands) and Commonwealth Scientific and Industrial Research Organisation (Australia) air sampling programs, Insights into the latitudinal differences and into the seasonal cycle of delta(18)O in CO2 are gained by looking at the contribution of each source, The isotopic exchange with soils induces a large isotopic depletion over the northern hemisphere continents, which overcomes the concurrent effect of isotopic enrichment due to leaf exchange, Compared to the land biota, the ocean fluxes and the anthropogenic CO2 source have a relatively minor influence, The shape of the latitudinal profile in delta(18)O appears determined primarily by the respiration of the land biota, which balances photosynthetic uptake over the course of a year, Additional information on the phasing of the terrestrial carbon exchange comes from the seasonal cycle of delta(18)O at high northern latitudes. [References: 24]
机译:在这项研究中,使用三维(3-D)示踪剂建模方法,我们模拟了大气CO2的delta(18)O。在大气传输模型TM2中,我们规定了O-18因植被和土壤,海洋交换,化石排放和生物质燃烧而产生的表面通量。首先分别讨论每个储层的模型模拟,然后将所有储层组合起来,以便与美国国家海洋和大气管理局-科罗拉多大学斯克里普斯海洋学研究所-中央大学进行的大气δ(18)O测量结果进行比较Isotopen Onderzoek(美国-荷兰)和英联邦科学与工业研究组织(澳大利亚)的空气采样程序,通过查看每种排放源的贡献,可以了解纬度差异以及CO2中δ(18)O的季节性周期。 ,与土壤的同位素交换会在北半球大陆上引起大量的同位素消耗,从而克服了由于叶片交换而引起的同位素富集的同时效应。与陆地生物区系相比,海洋通量和人为的CO2源影响相对较小, delta(18)O中纬度分布的形状似乎主要取决于陆地生物群的呼吸,平衡了一年中的光合吸收。有关陆地碳交换阶段性的其他信息来自北部高纬度地区delta(18)O的季节性周期。 [参考:24]

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