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Optimal amounts of water and nitrogen applied to sugar beet when crop price depends on its sugar content

机译:当作物价格取决于其糖含量时,适用于甜菜的最佳水和氮

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Aim of study: To derive mathematical formulas to determine the optimum amounts of applied water and N at variable crop prices and rainfall conditions for sugar beet. Area of study : Karaj Research Center, Alborz Province, Iran Material and methods : At first, mathematical formulas were derived to determine optimum applied water and nitrogen for sugar beet under rainfall occurrence, land limited (in cases that arable land area is limited and the farmer can not put more land area under irrigation) and water limited conditions when crop price depends on sugar content. Second, this theory was applied to analyze the relevant experimental data. The experiment was a split-plot design with irrigation treatments as the main plots (40%, 80%, 120% and 160% of evaporation from the surface of class A evaporation pan) and N fertilizer rates (0, 90, 180 and 270 kg N/ha) as subplots. Main results : Under land and water limiting conditions, deficit irrigation of 27% and 48% led to 6.4% and 25.4% decrease in yield and 21.4% and 96.2% increase in total net income, respectively, compared with full irrigation. Under water limiting conditions, cultivated land area increased by 93.7, 108 and 128% for 0, 60 and 120 mm rainfall, respectively. Under land limiting conditions, amounts of optimum irrigation water were 12381.2, 11781.2 and 11181.2 m 3 /ha, for 0, 60 and 120 mm rainfalls, respectively. The corresponding values for N were 262.5 kg/ha in all three rainfall quantities. Besides, under water limiting conditions, optimum amounts of irrigation water were 8708.1, 7828.8 and 6882.1 m 3 /ha for 0, 60 and 120 mm rainfalls, respectively. The corresponding values for N were 301.1, 299.5 and 295.5 kg/ha, respectively. Optimum amounts of irrigation water and N decreased by increase in rainfall amount. Research highlights: Under limited irrigation water conditions, if the rainfall, residual N, water cost and base crop price increases, the value of optimum applied water should be decreased.
机译:研究目的:衍生数学公式,以可变作物价格和糖甜菜降雨条件确定应用水和N的最佳量。研究领域:Karaj Research Center,Alborz Province,Iran Material和方法:首先,得出数学公式,以确定降雨发生,Land Limited下的糖甜菜的最佳应用水和氮气(在耕地面积有限的情况下当农作物价格取决于糖含量时,农民不能在灌溉下的土地面积更多地放置更多的土地面积。其次,该理论被应用于分析相关的实验数据。该实验是一种分裂图,具有灌溉处理,作为主图(40%,80%,120%和160%蒸发的蒸发锅)和氮肥率(0,90,180和270 kg n / ha)作为子图。主要结果:在陆地和水限制条件下,赤字灌溉为27%和48%导致净产量下降6.4%,总净收入增长21.4%和96.2%,与全灌溉相比。在水限制条件下,耕地面积分别增加了93.7,108和128%,降雨量分别为0,60和120毫米。在陆地限制条件下,最佳灌溉水的量分别为12381.2,11781.2和11181.2米3 / ha,分别为0,60和120毫米的降雨。在所有三种降雨量中,N的相应值为262.5千克/公顷。此外,在水限制条件下,分别为0,60和120毫米的灌溉水量为8708.1,7828.8和6882.1m 3 / ha。 n的相应值分别为301.1,299.5和295.5 kg / ha。最佳灌溉用水量和N通过降雨量的增加降低。研究亮点:在有限的灌溉水条件下,如果降雨,残留的N,水成本和基础作物价格增加,应减少最佳施加水的价值。

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