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Effect of Different Drip Nitrogen Fertilizer Levels onTomato Growth and Water Consumption

机译:不同滴灌氮肥水平对番茄生长和耗水量的影响

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A field experiment was conducted to study the effect of drip nitrogenfertigation on tomato growth, yield, evapotranspiration (ET) and water use efficiency(WUE) under polythene film mulched condition. Four different treatments of nitrogenfertilizer levels applied in the experiment were f1: 17.5 kg/ha, f2: 54.8 kg/ha, f3: 105.8kg/ha and f4: 202.4 kg/ha. The soil matric potential at 0.2 m depth under drip emitterwas controlled immediately at -20 kPa for four treatments. Results indicated that tomatoyields were almost same for all treatments. However, ET increased as fertilizerincreased, reached a maximum value at f2 level, and then decreased. The maximum ETwas 307 mm and the minimum was 277 mm. The WUE had a contrary tendency withthat for ET. Thus, nitrogen fertigation had no significant influences on tomato yield,maybe there were enough manure and ammonium di-hydrogen phosphate applied asbase fertilizer.
机译:进行了田间试验以研究滴灌氮的影响 施肥对番茄生长,产量,蒸散量(ET)和水分利用效率的影响 (WUE)在聚乙烯薄膜覆盖条件下。氮的四种不同处理 实验中施用的肥料水平为f1:17.5千克/公顷,f2:54.8千克/公顷,f3:105.8 千克/公顷和f4:202.4千克/公顷。滴头下0.2 m深度的土壤基质势 立即控制在-20 kPa进行四种处理。结果表明,番茄 所有处理的产量几乎相同。然而,ET随着肥料的增加而增加 增加,达到f2的最大值,然后减小。最大ET 最大为307毫米,最小为277毫米。 WUE与 对于ET。因此,氮肥对番茄产量没有显着影响, 也许有足够的肥料和磷酸二氢铵 基肥。

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