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在通过光致发光光谱法测定香草酸之前,利用纳米吸附剂对其进行选择性固相萃取。

Utilizing a nano-sorbent for the selective solid-phase extraction of vanillic acid prior to its determination by photoluminescence spectroscopy.

作者信息

Abdolmohammad-Zadeh Hossein, Mahmoudi-Kordi Fatemeh, Rahmati Manoochehr

机构信息

Department of Chemistry and Phytochemistry, Faculty of Sciences, Azarbaijan Shahid Madani University, Tabriz, Iran.

出版信息

Luminescence. 2014 Dec;29(8):1162-8. doi: 10.1002/bio.2677. Epub 2014 Apr 24.

Abstract

Vanillic acid (VA) is a phenolic acid, and acts as a natural antioxidant in fruits, vegetables and plants. The extraction and determination of trace levels of VA in plants is important, because stimulation of protein synthesis and activation of antioxidant enzymes occur in the presence of phenolic acids at trace levels. In this research, a photoluminescence spectroscopic method was developed for the quantification of VA in plant samples after separation and pre-concentration. Selective extraction of VA from aqueous solution was performed using a solid-phase extraction column packed with nickel-aluminum layered double hydroxide as a nano-sorbent. After elution of extracted analyte from the column using 3 mL of a 3 mol/L NaOH solution, its concentration was determined spectrofluorometrically at λ(em) = 357 nm with excitation at λ(ex) = 280 nm. The spectrofluorometry method gave a linear response for VA within the range 20.0-900.0 µg/L, with a correlation coefficient of 0.9982. The limit of detection and sorption capacity were 7.6 µg/L and 66.2 mg/g, respectively. The method was validated by comparing the obtained results with gas chromatographic data. This method was used to determine VA in Chenopodium album and Prangos asperula plants.

摘要

香草酸(VA)是一种酚酸,在水果、蔬菜和植物中作为天然抗氧化剂发挥作用。植物中痕量水平VA的提取和测定很重要,因为在痕量酚酸存在的情况下会发生蛋白质合成的刺激和抗氧化酶的激活。在本研究中,开发了一种光致发光光谱法,用于在分离和预浓缩后对植物样品中的VA进行定量。使用填充有镍铝层状双氢氧化物作为纳米吸附剂的固相萃取柱从水溶液中选择性萃取VA。用3 mL 3 mol/L NaOH溶液从柱上洗脱萃取的分析物后,在λ(ex)=280 nm激发下,于λ(em)=357 nm处用荧光光谱法测定其浓度。荧光光谱法对VA在20.0 - 900.0 μg/L范围内给出线性响应,相关系数为0.9982。检测限和吸附容量分别为7.6 μg/L和66.2 mg/g。通过将所得结果与气相色谱数据进行比较对该方法进行了验证。该方法用于测定藜和糙果芹植物中的VA。

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