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首页> 外文期刊>Revista Brasileira de Engenharia Agricola e Ambiental >Evidence of nitrogen and potassium losses in soil columns cultivated with maize under salt stress
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Evidence of nitrogen and potassium losses in soil columns cultivated with maize under salt stress

机译:盐胁迫下玉米种植的土壤氮磷钾损失的证据。

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The aim of this study was to evaluate the accumulation of salts in the soil from irrigation water and of N and K from fertilization. The experiment was conducted in PVC columns (20 cm in diameter and 100 cm in height), filled with non-saline soil, and cultivated with maize. A completely randomized block design in a 4 x 4 factorial was used, with four levels of salinity (0.5, 2.5, 5.0 and 7.5 dS m-1), four N rates, and five replicates. Nitrogen was applied as urea and potassium nitrate at the following rates: N1: N recommendation for maize (2.6 g column-1); N2: 0.3 times (0.78 g column-1) the recommended N1 dose; N3 and N4 with N based on N1 and N2 doses, respectively, reduced proportionally based on the evapotranspiration reduction caused by salinity. After 74 days from sowing, root and soil samples were collected at different soil depths. The electrical conductivity of the saturated extract (ECe) and the concentration of ions (Ca2+, Na+, and Cl-) increased as a function of salinity and soil depth. The opposite was observed for the root system. The increase in salinity also resulted in K+ and NO3- accumulation in the soil column, mainly in treatments with higher N rates (N1 and N3). At the end of the experiment, 88% of the NO3- applied at the highest salinity treatment (7.5 dS m-1) and the highest N rate (N1) was below 20 cm soil depth, evidencing a N loss process caused by leaching.
机译:这项研究的目的是评估灌溉水中土壤中盐分的累积以及施肥过程中氮,钾的累积。该实验是在PVC柱(直径20厘米,高100厘米)中进行的,填充了非盐渍土,并用玉米栽培。使用4 x 4阶乘的完全随机区组设计,具有四个盐度水平(0.5、2.5、5.0和7.5 dS m-1),四个氮比率和五个重复项。氮以下列比率施用为尿素和硝酸钾:N1:玉米推荐氮(2.6 g第1栏); N2:建议的N1剂量的0.3倍(0.78 g第1列); N3和N4的N分别基于N1和N2剂量,基于盐度引起的蒸散量减少而成比例地减少。播种74天后,收集了不同土壤深度的根和土壤样品。饱和提取物(ECe)的电导率和离子浓度(Ca2 +,Na +和Cl-)作为盐度和土壤深度的函数而增加。根系统则相反。盐分的增加还导致土壤中K +和NO3-的积累,主要是在氮含量较高(N1和N3)的处理中。在试验结束时,在最高盐度处理(7.5 dS m-1)和最高氮肥施用量(N1)下施用的88%的NO3低于土壤深度20 cm,这证明了淋滤导致的氮素损失过程。

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