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Nitrate-nitrogen leaching from three specialty crops of New Mexico under furrow irrigation system.

机译:沟灌系统下新墨西哥州三种特产作物的硝态氮淋溶。

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Nitrate leaching is a common problem in frequently fertilized agricultural crops in Southern New Mexico. The objectives of this study were to estimate the leaching depths, irrigation and plant uptake efficiencies for onion (Allium cepa L.), chile (Capsicum annuum), and cotton (Gossypium spp.) crops. The study aims to determine how existing best management practices for these three specialty crops could be improved. Soil samples collected monthly for two growing seasons starting April 2007 to June 2010 were analyzed for NO3-N and chloride concentrations. The NO3-N loadings below the rooting zone varied from 22 to 92 kg ha-1 during growing season 1 and 18-90 kg ha-1 during growing season 2 in all the three experimental fields. The leaching fractions (LFs) varied from 0.09 to 0.21 during growing season 1 and 0.08-0.22 during growing season 2 in the experimental fields. The irrigation efficiencies (IE=1 - LF) ranged from 79 to 91% during growing season 1 and from 78 to 92% during growing season 2 in all the three fields. Nitrogen application efficiencies (NAEs) varied from 39 to 75% during growing season 1 and 40-76% during growing season 2 in all the experimental fields. Under the prevalent management conditions, cotton field showed higher irrigation efficiency as well as the NAE as compared to onion and chile fields. Based on the soil N content at the end of growing seasons, the results indicate that reducing fertilizer applications until bulb formation in onions and flower initiation in chile can decrease the amount of fertilizer applications to as much as half, thus can help in reducing the NO3-N leaching and improving nitrogen and water efficiencies.
机译:硝酸盐浸出是新墨西哥州南部经常施肥的农作物中的常见问题。这项研究的目的是估计洋葱(葱属 L.),辣椒( Capsicum annuum )和棉花(< i> Gossypium spp。)作物。该研究旨在确定如何改善这三种特种作物的现有最佳管理方法。对从2007年4月至2010年6月的两个生长季节每月收集的土壤样品进行NO 3 N和氯化物浓度分析。生根区下方的NO 3 -N负荷在生长季1期间从22到92 kg ha -1 ,在18-90 kg ha -1 3 -N浸出并提高氮和水效率。

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