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Long-term fertilisation strategies and form affect nutrient budgets and soil test values, soil carbon retention and crop yield resilience

机译:长期施肥策略和形式影响营养预算和土壤试验值,土壤碳保留和作物产量弹性

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AimsThe aim of this study was to evaluate the effects of long-term mineral and organic fertilisation on crop performance and soil fertility.MethodsThe Long-Term Nutrient Depletion Trial (Denmark) was used to analyse changes in concentrations of Olsen-P, exchangeable potassium (K) and soil carbon (C). Yield responses (2010-2016) were evaluatedmaking use of an early-season temperature model, fertilisation practices were evaluated by nutrient budgets, and nitrogen use efficiency by calculation of apparent recovery (ANR) in subplots receiving mineral N.ResultsOlsen-P (r(2)=0.68, P&0.001) and exchangeable K (r(2)=0.86, P&0.001) were correlated with the nutrient budgets. Soil C concentrations increased from 10.0gkg(-1) (1995) to between 11.1-14.6gkg(-1) (2016), with the greatest accumulation under slurry applications (P&0.05, equalling 17-47% retention of slurry-C inputs). Relative yield responses of spring barley were associated with early season cold stress, but the model was not applicable to other crops. Increases of ANR in response to long-term phosphorus (P) applications were not significant.ConclusionsBalanced fertilisation is an effective way to maintain nutrient availability, and to ensure high and stable crop productivity and efficient use of nutrients. Direct C inputs from animal slurry are a major driver for increases of soil C concentrations.
机译:本研究的目标是评估长期矿物质和有机施肥对作物绩效和土壤肥力的影响。用于分析奥尔森-P浓度,可交换钾浓度的变化(丹麦) k)和土壤碳(c)。产量响应(2010-2016)评估使用早期温度模型,通过营养预算评估培养实践,并通过计算矿物质点的表观恢复(ANR)来评估氮利用效率,接受矿物质N.Resultsen-P(R( 2)= 0.68,P& LT; 0.001)和可交换k(R(2)= 0.86,P& 0.001)与营养预算相关。土壤C浓度从10.0gkg(-1)(1995)增加到11.1-14.6gkg(-1)(2016)之间,在浆料应用下最大的积累(P& 0.05,等于浆料的抑制等于17-47% -c输入)。春黑麦的相对产量反应与初季冷应激相关,但该模型不适用于其他作物。响应长期磷(P)应用的ANR增加并不显着。链接施肥是保持营养可用性的有效途径,并确保高稳定的作物生产率和有效利用营养利用。来自动物浆料的直接C输入是用于增加土壤C浓度的主要驱动器。

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