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首页> 外文期刊>Rapid Communications in Mass Spectrometry: RCM >Preliminary investigation of the simultaneous detection of sugars, ascorbic acid, citric acid, and sodium benzoate in non-alcoholic beverages by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry
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Preliminary investigation of the simultaneous detection of sugars, ascorbic acid, citric acid, and sodium benzoate in non-alcoholic beverages by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry

机译:基质辅助激光解吸/电离飞行时间质谱同时检测非酒精饮料中糖,抗坏血酸,柠檬酸和苯甲酸钠的初步研究

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摘要

Matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOFMS) was used for the simultaneous detection of sugars, ascorbic acid, citric acid, sodium and/or potassium benzoate in non-alcoholic beverages, with meso-tetrakis(pentafluorophenyl)porphyrin (MW 974) as a matrix. Using potassium hydroxide as dopant, fructose/glucose was detected as the potassiated molecule at m/z 219, whereas potassiated sucrose, [Sucrose K](+), was detected at m/z 381. Using sodium hydroxide as dopant, the fructose and sucrose ions were detected at m/z 203 and 365, respectively. Citric acid generated multiple ions at m/z 269, 307, and 345, which were assigned to [Citric-H+2K](+), [Citric-2H+3K](+), and [Citric-3H+4K](+), respectively. However, a stored methanolic solution of citric acid produced additional ions at m/z 283, 297, and 321, which were attributed to [Citric-2H+CH3+2K](+), [Citric-3H+2CH(3)+2K](+), and [Citric-3H+CH3+3K](+), respectively, due to esterification that took place during storage. The limits of detection in water were: ascorbic acid, 0.30 wt%; citric acid, 0.5 wt%; and sodium benzoate, 0.001 wt%. In the beverage formulations, the limits of detection were: ascorbic acid 0.3 wt%, citric acid 0.3 wt%, and sodium benzoate 0.02 wt%. Spiking a water or beverage solution that contained ascorbic and/or citric acid with less than 0.6 wt% of tartaric acid lowered the detection limits of ascorbic and citric acids to 0.2 wt%. This study demonstrates the potential for using MALDI-TOFMS in the quality control analyses of non-alcoholic beverages, particularly with regard to the detection of low molecular weight organic acids in commercial beverage formulations. Copyright (C) 2003 John Wiley Sons, Ltd. [References: 10]
机译:基质辅助激光解吸/电离飞行时间质谱(MALDI-TOFMS)用于同时检测非酒精性饮料中的糖,抗坏血酸,柠檬酸,苯甲酸钠和/或钾,并用中四联体(五氟苯基)卟啉(MW 974)为基质。使用氢氧化钾作为掺杂剂,在m / z 219处检测到果糖/葡萄糖为钾化分子,而在m / z 381检测到钾化蔗糖[蔗糖K](+)。使用氢氧化钠作为掺杂剂时,果糖和分别在m / z 203和365处检测到蔗糖离子。柠檬酸在m / z 269、307和345处生成多个离子,分别分配给[Citric-H + 2K](+),[Citric-2H + 3K](+)和[Citric-3H + 4K] (+)。但是,存储的柠檬酸甲醇溶液在m / z处会产生283、297和321附加离子,这归因于[Citric-2H + CH3 + 2K](+),[Citric-3H + 2CH(3)+由于在储存过程中发生了酯化反应,分别产生了2K](+)和[Citric-3H + CH3 + 3K](+)。在水中的检出限为:抗坏血酸0.30 wt%;柠檬酸0.5重量%;和0.001重量%的苯甲酸钠。在饮料配方中,检出限为:抗坏血酸0.3 wt%,柠檬酸0.3 wt%和苯甲酸钠0.02 wt%。掺入含有抗坏血酸和/或柠檬酸且酒石酸含量低于0.6 wt%的水或饮料溶液,会使抗坏血酸和柠檬酸的检测限降低至0.2 wt%。这项研究证明了在非酒精饮料的质量控制分析中使用MALDI-TOFMS的潜力,特别是在检测商业饮料配方中的低分子量有机酸方面。版权所有(C)2003 John Wiley Sons,Ltd. [参考:10]

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