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Roles of Biogeochemical Processes in the Oceanic Carbon Cycle Described with a Simple Coupled Physical-Biogeochemical Model

机译:用简单耦合的物理-生物地球化学模型描述生物地球化学过程在海洋碳循环中的作用

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To evaluate the contribution of biogeochemical processes to the oceanic carbon cycle and to calculate the ratio of calcium carbonate to organic carbon downward export, we have incorporated biological and alkalinity pumps in the yoked high-latitude exchange/interior diffusion-advection (YOLDA) model. The biogeochemical processes are represented by four parameters. The values of the parameters are tuned so that the model can reproduce the observed phosphate and alkalinity distributions in each oceanic region. The sensitivity of the model to the biogeochemical parameters shows that biological production rates in the euphotic zone and decomposition depths of particulate matters significantly influence horizontal and vertical distributions of biogeochemical substances. The modeled vertical fluxes of particulate organic phosphorus and calcium carbonate are converted to vertical carbon fluxes by the biological pump and the alkalinity pump, respectively. The downward carbon flux from the surface layer to the deep layer in the entire region is estimated to be 3.36 PgC/yr, which consists of 2.93 PgC/yr from the biological pump and 0.43 PgC/yr from the alkalinity pump, which is consistent with previous studies. The modeled rain ratio is higher with depth and higher in the Pacific and Indian Oceans than in the Atlantic Ocean. The global rain ratio at the surface layer is calculated to be 0.14 to 0.15. This value lies between the lower and higher ends of the previous estimates, which range widely from 0.05 to 0.25. This study indicates that the rain ratio is unlikely to be higher than 0.15, at least in the surface waters.
机译:为了评估生物地球化学过程对海洋碳循环的贡献并计算碳酸钙与有机碳向下输出的比率,我们将生物和碱度泵纳入了带轭高纬度交换/内部扩散-平流(YOLDA)模型中。生物地球化学过程由四个参数表示。调整参数的值,以便模型可以重现每个海洋区域中观察到的磷酸盐和碱度分布。该模型对生物地球化学参数的敏感性表明,在富营养区的生物生产率和颗粒物的分解深度显着影响生物地球化学物质的水平和垂直分布。通过生物泵和碱度泵分别将颗粒有机磷和碳酸钙的模拟垂直通量转换为垂直碳通量。从表层到深层的整个区域的向下碳通量估计为3.36 PgC / yr,由生物泵的2.93 PgC / yr和碱度泵的0.43 PgC / yr组成,与之前的学习。模拟的降雨率随深度增加,在太平洋和印度洋比在大西洋高。经计算,表层的总雨水比为0.14至0.15。该值介于先前估计的上下限之间,范围从0.05到0.25。这项研究表明,至少在地表水中,降雨率不太可能高于0.15。

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