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Evolution of soil carbon with various cropping sequences on the rolling pampas. Determination of carbon origin using variations in natural 13C abundance

机译:滚动草原上不同种植顺序下土壤碳的演变。利用自然13C丰度的变化确定碳源

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The evolution of organic matter was studied in the soils of the humid central Argentinean pampas, which are extensively cultivated without the use of fertilizers. The organic carbon contents of the soils were recorded on two sites for 13 years. At Oliveros, five rotations were compared after 60 years of cropping: wheat monoculture, maize monoculture, wheat/soyabean, wheat/soyabean-maize and wheat/soyabean-sunflower. At Pergamino, a soyabean monoculture followed directly after ploughing in the original pasture. Measurements of the variation in the 13C isotopic composition were made to determine the proportions of 'young' C (derived from crops) and 'old' C (present at the start of the experiments) in the total reserve of organic C. At Oliveros, thesoil C contents fell markedly during the first 5 years of the experiment (a loss of~9%) and then seemed to have stabilised for all the rotations. The amount of young C formed by the end of 13 years varied from 3.9 to 9.9 t ha-1, i.e. 10-17% of the returned carbon. At Pergamino, ploughing the pasture caused a large fall in the organic carbon (28%) during the 13 years of soyabean monoculture. The amount of old C fell rapidly, its renewal time being 24 years.
机译:研究了阿根廷中部潮湿湿润土壤中有机物质的演变,这些土壤在不使用肥料的情况下得到了广泛种植。在两个地点记录了13年的土壤有机碳含量。在奥利弗罗斯,种植60年后比较了五个轮作:小麦单作,玉米单作,小麦/大豆,小麦/大豆-玉米和小麦/大豆-向日葵。在佩尔加米诺(Pergamino),在原始牧场上耕种后立即进行大豆单一栽培。测量13 C同位素组成的变化,以确定“年轻” C(来自农作物)和“旧” C(在实验开始时存在)在有机碳总储备中的比例。在Oliveros,在实验的前5年中,土壤C的含量显着下降(约9%的损失),然后似乎在所有旋转中都趋于稳定。到13年末,形成的年轻C的量从3.9 t到9.9 t ha-1不等,即占返回碳的10-17%。在佩尔加米诺(Pergamino),耕作牧场在大豆单一栽培的13年中导致有机碳大幅下降(28%)。旧C的数量迅速下降,其更新时间为24年。

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