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首页> 外文期刊>Ciência Rural >Influência de resíduos de culturas de ver?o sobre o 15 N em fra??es da matéria organica de dois solos de terras baixas
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Influência de resíduos de culturas de ver?o sobre o 15 N em fra??es da matéria organica de dois solos de terras baixas

机译:两种低地土壤中夏季作物残留物对15 N的影响

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The state of Rio Grande do Sul has about 20% of the total area as lowland soils, suitable for flooded rice (Oryza sativa). In order to mitigate damage caused by rice monoculture, new crops such as sorghum (Sorghum bicolor) and soybean (Glycine max) have been cultivated in these areas. With different qualities of crop residues, it is expected a change in soil organic matter (SOM) dynamics and consequently, nitrogen (N) availability. The objective of this study was to evaluate the influence of rice, soybean and sorghum crop residues on the N present in physical fractions of SOM of two lowland soils, using labeled 15 N technique, under incubation for 180 days in aerobic condition and more 180 days in anaerobic condition. At 30, 180 and 360 days of incubation the remaining N of the plant residues and N destination from the residues in both soils were quantified in the physical fractions of SOM 250 μm, 250-53 μm and 53 μm. The soil with higher amount of clay+silt received a larger quantity of 15 N from residues, while flooding of the soil after 180 days caused a loss of N added to the soil by the soybean and sorghum residues. In general, larger amounts of 15 N were reported in the fraction 53 μm, associated with clay minerals, throughout the incubation period. These N losses should be considered in N fertilization for the following crops in rotation with flooded rice.
机译:南里奥格兰德州的低地土壤约占总面积的20%,适合淹水水稻(Oryza sativa)。为了减轻水稻单一栽培造成的损害,在这些地区种植了新作物,例如高粱(高粱)和大豆(最大大豆)。由于作物残渣的质量不同,因此预计土壤有机质(SOM)动力学会发生变化,因此氮(N)的利用率也会发生变化。这项研究的目的是使用标记的15 N技术,在有氧条件下孵育180天和超过180天的条件下,评估水稻,大豆和高粱作物残渣对两种低地土壤SOM物理组分中氮的影响。在无氧条件下。在孵育30、180和360天时,以SOM> 250μm,250-53μm和<53μm的物理级分对剩余的N植物残渣和来自两个土壤中的N目的地进行定量。粘土+淤泥含量较高的土壤从残渣中吸收的氮含量更高,而180天后的土壤洪水导致大豆和高粱残渣向土壤中添加的氮素流失。通常,在整个孵化期间,<53μm的馏分中报告了与粘土矿物相关的15 N量较大。在随后的水稻轮作作物中,在施肥时应考虑这些氮素的损失。

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