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A Rapid and Green Limit Test Method for Five Synthetic Colorants in Foods Using Polyamide Thin-layer Chromatography

机译:使用聚酰胺薄层色谱法快速测定食品中五种合成色素的绿色极限

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摘要

Synthetic food colorants are used in very small amounts. Typically, the colorants are extracted, purified and concentrated prior to analysis; however, sample preparation is time-consuming, of high cost and environmentally unfriendly. In this work, a polyamide thin-layer chromatographic (TLC) method in combination with on-plate solid-phase extraction and backlight-assisted detection has been developed for five commonly used synthetic colorants in foods. Beverages (degassed where appropriate) were directly applied to the polyamide TLC plate. Gelatinous and solid samples were first extracted with water-ammonia aqueous solution (25 %) (99:1) assisted by ultrasonic treatment. Sample solutions were then acidified before application. Relatively large volumes of solution (5-25 mu l) could be applied to the plate without significant sample diffusion. Before development, the start spots were cleaned up using ethanol (95 %)-water-acetic acid (5:5:0.1). The plate was developed using a mobile phase of ethanol (95 %)-water-ammonia aqueous solution (25 %) (75:14:1). After development, the plate was viewed in backlight mode with an LED array light. The selectivity of the method proved acceptable. The limits of detection for Ponceau 4R, Amaranth, Tartrazine, Sunset Yellow and Brilliant Blue were 10.1, 9.59, 4.19, 4.12 and 2.06 ng, respectively. The method was rapid, low-cost and sensitive, providing a green limit test method for five colorants in foods.
机译:合成食用色素的用量非常少。通常,在分析之前先提取,纯化和浓缩着色剂,然后再进行分析。然而,样品制备费时,成本高且对环境不利。在这项工作中,已经开发出一种聚酰胺薄层色谱(TLC)方法与板载固相萃取和背光辅助检测相结合,用于食品中的五种常用合成着色剂。将饮料(适当时脱气)直接施加到聚酰胺TLC板上。首先用超声处理辅助的水-氨水溶液(25%)(99:1)提取凝胶状和固体样品。然后在施用前将样品溶液酸化。可以将相对较大体积的溶液(5-25μl)施加到板上,而无需明显的样品扩散。在显影之前,使用乙醇(95%)-水-乙酸(5:5:0.1)清洁起始点。使用乙醇(95%)-水-氨水溶液(25%)(75:14:1)的流动相显影板。显影后,用LED阵列灯在背光模式下观察该板。该方法的选择性证明是可以接受的。丽春红4R,A菜红,酒石黄,日落黄和亮蓝的检出限分别为10.1、9.59、4.19、4.12和2.06 ng。该方法快速,低成本且灵敏,为食品中的五种着色剂提供了绿色极限测试方法。

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