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Study on the Effect of Nitrogen Fertilizer Levels on Chlorophyll Concentration of Grape Leaves Using FT-IR Spectroscopy

机译:红外光谱法研究氮肥水平对葡萄叶片叶绿素浓度的影响

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摘要

Methods used to detect N deficiencies during the growing season include chlorophyll meter readings, destructive plant sampling, and soil sampling. Furthermore, diagnostic methods like FT-IR techniques that take advantage of the optical properties of leaves are another possibility to assess the nitrogen status of plants in a field and to assess nitrogen fertility effects on yield. The use of effective FT-IR techniques would eliminate the need for extensive field sampling.rnFourier Transform Infrared (FT-IR) spectroscopic technique was used in the present work to study the effect of N-fertilization levels on the concentrations of chlorophyll and nitrogen in grape leaves. Ammonium nitrate (N-fertilizer) was applied after the beginning of vegetative growth by supplying 33.3%, 66.6%, 100%, 133.3%, and 166.6% of the recommended N-fertilizer level, according to the Ministry of Agriculture (50 units N which is considered the level of 100% for comparing during N application). To establish a range of leaf chlorophyll levels, each treatment was applied to definite row; thus there were 5 different rows, three vines in each line were selected to make the application.
机译:在生长季节检测氮缺乏的方法包括叶绿素仪读数,破坏性植物采样和土壤采样。此外,利用叶片的光学特性的诸如FT-IR技术之类的诊断方法是评估田间植物氮素状况和评估氮肥对产量的影响的另一种可能性。使用有效的FT-IR技术将消除对大量野外采样的需求。本研究使用傅立叶变换红外(FT-IR)光谱技术研究氮肥水平对番茄中叶绿素和氮浓度的影响。葡萄叶。根据农业部的数据,在营养生长开始后施用硝酸铵(氮肥),提供的氮肥含量建议为33.3%,66.6%,100%,133.3%和166.6%(50单位N在N施用期间被认为是100%的比较水平)。为了确定叶片叶绿素水平的范围,将每种处理施用于确定的行。因此有5个不同的行,每行选择了三个葡萄藤进行应用。

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