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首页> 外文期刊>Phytochemical Analysis >Simultaneous Determination of Plant Growth Regulators 1-NaphthylaceticTI Simultaneous Determination of Plant Growth Regulators 1-Naphthylacetic Acid and 2-Naphthoxyacetic Acid in Fruit and Vegetable Samples by Room Temperature Phosphorescence
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Simultaneous Determination of Plant Growth Regulators 1-NaphthylaceticTI Simultaneous Determination of Plant Growth Regulators 1-Naphthylacetic Acid and 2-Naphthoxyacetic Acid in Fruit and Vegetable Samples by Room Temperature Phosphorescence

机译:室温磷光法同时测定水果和蔬菜样品中植物生长调节剂1-萘乙酸和2-萘氧基乙酸

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Introduction - 1-Naphthylacetic and 2-naphthoxyacetic acids belong to the synthetic branch of auxins. Auxins have attracted considerable interest as a subject of study by virtue of their biological and physiological significance. Their broad use as plant growth regulators has raised the need for simple, rapid, sensitive and selective analytical methods for their determination in real samples. Objective - The primary aim of this work was to develop an analytical method for the simultaneous determination of 1-naphthylacetic acid and 2-naphthoxyacetic acid in commercial technical formulations, tomato and various fruit types (apple, strawberry, orange and plum) by room temperature phosphorescence. Methodology - Filtrated solutions of aqueous slurries from ecological fruit and tomato samples are acidified and then extracted with dichloromethane. Once the solvent is evaporated, the dried residue is dissolved in sodium dodecyl sulphate (a micellar agent), and supplied with thallium (I) nitrate as an external heavy atom source and sodium sulphite as deoxygenation agent to enhance the ensuing phosphorescence. Results - The broad-band overlapping spectra for the two analytes were resolved by first-and second-derivative phosphorescence spectrometry. Zero-crossing measurements at 488.5nm in the first-derivative spectrum and 469.5nm in the second derivative spectrum exhibited a linear dependence on the 2-naphthoxyacetic acid and 1-naphthylacetic acid concentration, respectively. The detection limits as determined in accordance with the error propagation theory were 11.5ng/mL for 1-naphthylacetic acid and 15.6ng/mL for 2-naphthoxyacetic acid. Conclusion - The proposed method affords the determination of 1-naphthylacetic acid and 2-naphthoxyacetic acid in real samples with near-quantitative recoveries from agricultural products
机译:简介-1-萘乙酸和2-萘氧基乙酸属于生长素的合成分支。生长素由于其生物学和生理学意义而引起了极大的兴趣作为研究的对象。它们广泛用作植物生长调节剂,因此需要简单,快速,灵敏和选择性的分析方法来测定实际样品中的含量。目标-这项工作的主要目的是开发一种在室温下同时测定商业技术配方,番茄和各种水果类型(苹果,草莓,橙和李子)中1-萘乙酸和2-萘氧基乙酸的分析方法磷光。方法学-将生态水果和番茄样品中的含水浆液过滤后酸化,然后用二氯甲烷萃取。蒸发溶剂后,将干燥的残留物溶于十二烷基硫酸钠(胶束剂)中,并提供硝酸th(I)作为外部重原子源,并提供亚硫酸钠作为脱氧剂以增强随后的磷光。结果-通过一阶和二阶导数磷光光谱法解析了两种分析物的宽带重叠光谱。一阶导数光谱在488.5nm和二阶导数光谱在469.5nm处的过零测量分别显示出对2-萘氧基乙酸和1-萘乙酸浓度的线性依赖性。根据误差传播理论确定的检出限为:1-萘乙酸为11.5ng / mL,2-萘氧基乙酸为15.6ng / mL。结论-该方法为实际样品中的1-萘乙酸和2-萘氧基乙酸的测定提供了近乎定量的农产品回收率

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