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Carbon sequestration due to the abandonment of agriculture in the former USSR since 1990

机译:自1990年以来由于前苏联放弃农业而进行的碳固存

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The end of the Soviet Union and the collapse of its agricultural structures in the early 1990s has induced the abandonment of a large croplands area, which have been recovered by herbaceous plants. This widespread unintended and abrupt land use change took place over 200,000 km(2), a large enough scale to impact the continental and global carbon budgets. The goal of this study is to estimate the net biome productivity (NBP) of the abandoned croplands and to assess the soil C storage dynamics due to recent land conversion. The soil C balance and its input (net primary productivity) and output (heterotrophic respiration) fluxes is simulated in a spatially explicit manner with the process-driven natural vegetation/crop model Organizing Carbon and Hydrology in Dynamic Ecosystems-Supra-Thermal Ion Composion Spectrometer prescribed with successive area changes of abandoned croplands during the 1990s. We estimate that regional agricultural abandonment is responsible of a cumulated carbon sink over 1991 2000 of 373 gC m(-2), or 64 TgC over the domain considered, which defines a mean annual C sink of 46.7 g C m(-2) a(-1). Agricultural practices during the former cultivation phase determine a legacy on the C sink following abandonment, which impacts by +37% to -25% according to the practice considered (no tillage, no fertilization, and export of some crop residues). We conclude that futures studies of this regional change in the C cycle should better consider management information in order to refine the NBP estimate.
机译:苏联的终结及其1990年代初农业结构的崩溃导致了大片农田的放弃,而这些土地已被草本植物所恢复。这种广泛的,意想不到的,突然的土地利用变化发生在200,000 km(2)以上,其规模足以影响大陆和全球的碳预算。这项研究的目的是评估废弃农田的净生物群落生产力(NBP),并评估由于最近土地转换而造成的土壤碳储存动态。使用过程驱动的自然植被/作物模型以空间明确的方式模拟了土壤碳平衡及其输入(净初级生产力)和输出(异养呼吸)通量,在动态生态系统中组织碳和水文学-超热离子组成光谱仪规定了1990年代废弃农田的连续面积变化。我们估计,区域农业的放弃是造成1991 2000年累积碳汇373 gC m(-2)或考虑范围内64 TgC的原因,这定义了年均碳汇46.7 g C m(-2)a (-1)。前耕种阶段的农业实践决定了废弃后的碳汇遗留,根据所考虑的实践(不耕种,不施肥和出口一些农残),其影响范围为+ 37%至-25%。我们得出的结论是,对C循环中这一区域变化的未来研究应更好地考虑管理信息,以完善NBP估算。

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