首页> 外文期刊>Chilean Journal of Agricultural Research >Evaluation of fertilization with uncoated urea and 3,4-dimethylpyrazole phosphate (DMPP)-coated urea on nitrogen leaching and rose (Rosa spp.) yield
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Evaluation of fertilization with uncoated urea and 3,4-dimethylpyrazole phosphate (DMPP)-coated urea on nitrogen leaching and rose (Rosa spp.) yield

机译:氮淋失和玫瑰花(罗莎属)产量对未包膜尿素和3,4-二甲基吡唑磷酸酯(DMPP)包膜尿素施肥的评价

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The negative impact of N over-fertilization has acquired importance in rose (Rosa spp.) growers in Colombia. The nitrification inhibitor 3,4-dimethylpyrazole phosphate (DMPP) has been considered a valuable alternative to diminish the N losses by leaching and to enable more efficient N use efficiency in crops. The objective of the present work was to study the effect of DMPP on the mineral N (NH4+- N and NO3--N) content in soil and water leaching, and physiological characteristics of rose plants. A greenhouse experiment was performed for 10 wk. Four-year-old 'Charlotte' rose cultivars grafted on 'Natal Briar' were grown in soil and fertirrigated daily with a complete nutrient solution containing 170 mg N L-1. Two N fertilizers (uncoated urea [UA], and urea + 1% DMPP [UDMPP]) were used. Results showed that UDMPP did not show any advantages on dry mass accumulation, N use efficiency, leaf area, number of marketable stems, SPAD readings, chlorophyll fluorescence, and leaf N concentration. Despite all these results, the addition of the inhibitor reduced mean NO3-N concentrations in the percolated water by 65.81%. These results suggest that UDMPP could be a valuable tool to reduce NO3-- N leaching losses by retaining applied N in the ammoniacal form.
机译:氮肥的负面影响在哥伦比亚的玫瑰(Rosa spp。)种植者中越来越重要。硝化抑制剂3,4-二甲基吡唑磷酸酯(DMPP)被认为是有价值的替代品,可通过淋洗减少N的损失并提高作物中N的利用效率。本研究的目的是研究DMPP对土壤和水淋溶中矿质N(NH4 + -N和NO3--N)含量以及月季植物生理特性的影响。进行了10周的温室实验。将四岁的嫁接在“ Natal Briar”上的“夏洛特”玫瑰品种种植在土壤中,并每天用含有170 mg N L-1的完整营养液进行灌溉。使用了两种氮肥(未包膜尿素[UA]和尿素+ 1%DMPP [UDMPP])。结果表明,UDMPP在干物质积累,氮素利用效率,叶面积,适销茎数,SPAD读数,叶绿素荧光和叶片氮素浓度方面没有任何优势。尽管获得了所有这些结果,但添加抑制剂后,渗滤水中的平均NO3-N浓度降低了65.81%。这些结果表明,UDMPP通过以氨的形式保留施用的氮,可能成为减少NO3-- N淋失损失的有价值的工具。

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