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No-tillage and crop rotation increase crop yields and nitrogen stocks in sandy soils under agroclimatic risk

机译:在农业致胆管风险下,无耕作和作物旋转增加了沙质土壤中的作物产量和氮肥

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Agricultural production is challenging in environments with climatic instability, high temperatures, and water deficits, particularly in sandy soils. The use of no-tillage, crop rotation, and cover crops can increase the sustainability of cropping systems under these conditions. Nitrogen (N) is important to improve carbon production and soil organic matter. The objective of this study was to evaluate the effect of summer crop rotation (sorghum or soybean), tillage system (no-tillage and conventional), and intercropping (maize and palisade grass) on crop yield (soybean and maize grain, sorghum silage and palisade grass dry matter) and soil nitrogen stocks. No-tillage system (NT) resulted in yields 6% higher for soybean, 100 % higher for sorghum and 17 % higher for maize, when compared to conventional tillage, and had no effect on palisade yield. The high palisade grass yield after soybean in 2014 decreased soil inorganic N stocks in the 0-60 cm layer, but total soil N was higher when using soybean rotation under NT and after intercropped maize in 2015. Soybean increased maize yields by 25 % (0.86 Mg ha(-1)) and palisade yields by 46 % (1.5 Mg ha(-1)) when compared to silage sorghum. Palisade grass decreased maize yield by 30 % with intercropping. Soybean grown under NT after maize and palisade grass intercrop improves soil N stocks and crop yields. Despite palisade grass competition decreasing maize yields in years with rainfall above the historical mean, its use is important to improve soil organic matter over time.
机译:农业生产在气候不稳定,高温和水赤字的环境中挑战,特别是在沙质土壤中。使用无耕作,作物旋转和覆盖作物可以提高这些条件下的种植系统的可持续性。氮气(n)是改善碳生产和土壤有机物的重要性。本研究的目的是评估夏季作物旋转(高粱或大豆),耕作系统(无耕作和常规),以及间作(玉米和俯仰草)对作物产量的影响(大豆和玉米籽粒,高粱青贮和玉米青贮饲料)普拉迪斯草干物质)和土壤氮素股。无耕作系统(NT)导致大豆产生6%的产率为6%,与常规耕作相比,玉米高粱100%,17%较高,并且对普拉迪斯产量没有影响。大豆在大豆后的高地草收益率下降0-60厘米的土壤无机N股,但是在NT下使用大豆旋转和2015年间作玉米后的总土N较高。大豆增加了玉米产量25%(0.86与青贮高粱相比,Mg HA(-1))和拨打额外收益率为46%(1.5mg(-1))。 Palisade Grass随着Intercropping的玉米产量减少了30%。大豆在NT下生长在玉米和普拉斯德草间,改善了土壤股票和作物产量。尽管对历史意味着降雨量的多年来,玉米竞争降低了玉米产量,但它的使用对于随着时间的推移,它的使用对于改善土壤有机质是重要的。

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