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Soil organic carbon dynamics as related to land use history in the northwestern Great Plains

机译:大平原西北部土壤有机碳动态与土地利用历史的关系

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+AFs-1+AF0- Strategies for mitigating the global greenhouse effect must account for soil organic carbon (SOC) dynamics at both spatial and temporal scales, which is usually challenging owing to limitations in data and approach. This study was conducted to characterize the SOC dynamics associated with land use change history in the northwestern Great Plains ecoregion. A sampling framework ( 40 sample blocks of 10 x 10 km(2) randomly located in the ecoregion) and the General Ensemble Biogeochemical Modeling System ( GEMS) were used to quantify the spatial and temporal variability in the SOC stock from 1972 to 2001. Results indicate that C source and sink areas coexisted within the ecoregion, and the SOC stock in the upper 20-cm depth increased by 3.93 Mg ha(-1) over the 29 years. About 17.5+ACU- of the area was evaluated as a C source at 122 kg C ha(-1) yr(-1). The spatial variability of SOC stock was attributed to the dynamics of both slow and passive fractions, while the temporal variation depended on the slow fraction only. The SOC change at the block scale was positively related to either grassland proportion or negatively related to cropland proportion. We concluded that the slow C pool determined whether soils behaved as sources or sinks of atmospheric CO2, but the strength depended on antecedent SOC contents, land cover type, and land use change history in the ecoregion.
机译:+ AFs-1 + AF0-缓解全球温室效应的策略必须考虑空间和时间尺度上的土壤有机碳(SOC)动态,由于数据和方法的局限性,这通常具有挑战性。进行这项研究的目的是表征西北大平原生态区与土地利用变化历史相关的SOC动态。抽样框架(40个10 x 10 km(2)的样本块随机位于生态区域中)和通用整体生物地球化学建模系统(GEMS)用于量化1972年至2001年SOC储量的时空变化。表明,碳源和汇区在生态区内共存,在过去29年中,深度20厘米以内的SOC储量增加了3.93 Mg ha(-1)。在122 kg C ha(-1)yr(-1)下,评估该区域约17.5 + ACU-作为碳源。 SOC储量的空间变异性归因于慢馏分和被动馏分的动力学,而时间变化仅取决于慢馏分。块状尺度的SOC变化与草地比例成正相关,与耕地比例成负相关。我们得出的结论是,缓慢的碳库决定了土壤是作为大气CO2的来源还是作为汇,但强度取决于生态区中的SOC含量,土地覆盖类型和土地利用变化的历史。

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