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Soil carbon and nitrogen dynamics as affected by land use change and successive nitrogen fertilization of sugarcane

机译:土壤碳和氮动力学受土地利用变化和甘蔗连续氮肥的影响

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The land use change (LUC) and application of N fertilizers have potential to affect soil C and N dynamics and long-term C and N stocks. We aimed to evaluate the effects of the LUC from native vegetation (seasonal semideciduous forest) to sugarcane (Saccharwn spp.).cultivation under successive annual N fertilizer applications on chemical and microbiological attributes of sugarcane-cropped soils. Two field trials were performed during three (Site 1) or four years (Site 2) in southeastern Brazil. Soil sampling was carried out in the following N treatments applied to the crop: control (N-unfertilized plots), organomineral fertilizer (100 kg ha(-1) yr(-1) N), and synthetic fertilizer (100 and 200 kg ha(-1) yr(-1) N). Soil samples from native vegetation located near each site were also taken, to serve as reference for studying LUC. For Site 1, successive application of N fertilizers on sugarcane managed under green cane trash blanketing system maintained the C and N dynamics and stocks in soil to conditions similar to those found before LUC. At Site 2, however, modifications in soil attributes caused by LUC were more impacting than the N fertilization management. Compared to synthetic N fertilizers, successive application of organomineral fertilizer did not improve the soil microbiological attributes as well as organic C and total N stocks. Lastly, successive high N input (200 kg ha(-1) yr(-1), via synthetic fertilizer) promoted accumulation of mineral N deep in the soil profile, thus increasing potential losses through NO3- leaching.
机译:土地利用变化(LUC)和N肥的应用具有影响土壤C和N动态和长期C和N股的潜力。我们旨在评估LUC从本地植被(季节性半抗林)对甘蔗(Saccharwn SPP)的影响。连续年度N肥料培养在甘蔗 - 裁剪土壤化学和微生物属性上的培养。在巴西东南部的三(遗址1)或四年(留置2次)中进行了两个现场试验。在适用于作物的下列N处理中进行土壤取样:对照(N-未受精的地块),有机碱肥料(100kg ha(-1)Yr(-1)n)和合成肥料(100和200kg ha (-1)Yr(-1)n)。还采用了位于每个部位附近的土着植被的土壤样品,作为研究Luc的参考。对于现场1,在绿色甘蔗垃圾覆盖系统下甘蔗的连续应用在绿色甘蔗垃圾覆盖系统中维护了土壤中的C和N动态和股票与Luc之前的条件相似。然而,在现场2,在LUC引起的土壤属性的修改比N施肥管理更受影响。与合成的N肥料相比,有机杆菌的连续应用没有改善土壤微生物属性以及有机C和总量的股票。最后,连续的高N个输入(200kg ha(-1)Yr(-1),通过合成肥料)促进了在土壤曲线中深度的矿物质的积累,从而通过NO3浸出增加了潜在的损失。

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