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Impact of soil moisture and temperature on potato production using seepage and center pivot irrigation

机译:利用渗流和中枢灌溉对土壤水分和温度对马铃薯生产的影响

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Irrigation, soil moisture and temperature play an important role in potato production. This field study was conducted at a private potato farm in SW Florida from 2012 to 2014. The randomized complete block design was used: four production farms each with a pair of seepage and hybrid center pivot irrigation systems. Soil moisture and temperature at five soil depths, rainfall, and water table in situ were monitored. Nitrate levels at the top 20 cm soils were measured at harvest in the second growing season. Water usage was calculated by the flow meters and rain gauges. Potato yields were measured. The stepwise linear regression showed that the potato yield was mainly regulated by the surface (10 cm) soil temperature and soil water moisture at 20 and 30 cm depths. Hybrid center pivot can save more than 50% of irrigation water without significant yield loss, suggesting center pivot has great potential in water savings. Hybrid center pivot irrigation had relatively low nitrate concentrations at the top 20 cm soil, indicating a new fertilizer program may be needed for overhead irrigation. (C) 2015 Elsevier B.V. All rights reserved.
机译:灌溉,土壤湿度和温度在马铃薯生产中起重要作用。该田间研究于2012年至2014年在佛罗里达州西南部的一个私人马铃薯农场进行。使用了随机完整块设计:四个生产农场,每个农场都有一对渗水和混合中心枢轴灌溉系统。监测了五个土壤深度的土壤湿度和温度,降雨和原位地下水位。在第二个生长季节收获时测量顶部20 cm土壤的硝酸盐水平。用水量通过流量计和雨量计计算得出。测量马铃薯的产量。逐步线性回归表明,马铃薯的产量主要受地表温度(10 cm)和深度为20和30 cm的土壤水分的调节。混合中心枢轴可以节省50%以上的灌溉水而不会显着降低产量,这表明中心枢轴在节水方面具有巨大潜力。混合中心枢纽灌溉在表层20 cm土层的硝酸盐浓度相对较低,表明高架灌溉可能需要新的肥料计划。 (C)2015 Elsevier B.V.保留所有权利。

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