首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Preparation of novel alumina nanowire solid-phase microextraction fiber coating for ultra-selective determination of volatile esters and alcohols from complicated food samples
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Preparation of novel alumina nanowire solid-phase microextraction fiber coating for ultra-selective determination of volatile esters and alcohols from complicated food samples

机译:新型氧化铝纳米线固相微萃取纤维涂层的制备,用于超选择性测定复杂食品中的挥发性酯和醇

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摘要

A novel alumina nanowire (ANW) solid-phase microextraction (SPME) fiber coating was prepared by a simple and rapid anodization-chemical etching method for ultra-selective determination of volatile esters and alcohols from complicated food samples. Preparation conditions for ANW SPME fiber coating including corrosion solution concentration and corrosion time were optimized in detail for better surface morphology and higher surface area based on scanning electron microscope (SEM). Under the optimum conditions, homogeneous alumina nanowire structure of ANW SPME fiber coating was achieved with the average thickness of 20. μm around. Compared with most of commercial SPME fiber coatings, ANW SPME fiber coatings achieved the higher extraction capacity and special selectivity for volatile esters and alcohols. Finally, an efficient gas sampling technique based on ANW SPME fiber coating as the core was established and successfully applied for the ultra-selective determination of trace volatile esters and alcohols from complicated banana and fermented glutinous rice samples coupled with gas chromatography/mass spectrometry (GC/MS) detection. It was interesting that 25 esters and 2 alcohols among 30 banana volatile organic compounds (VOCs) identified and 4 esters and 7 alcohols among 13 identified VOCs of fermented glutinous rice were selectively sampled by ANW SPME fiber coatings. Furthermore, new analytical methods for the determination of some typical volatile esters and alcohols from banana and fermented glutinous rice samples at specific storage or brewing phases were developed and validated. Good recoveries for banana and fermented glutinous rice samples were achieved in range of 108-115% with relative standard deviations (RSDs) of 2.6-6.7% and 80.0-91.8% with RSDs of 0.3-1.3% (n=3), respectively. This work proposed a novel and efficient gas sampling technique of ANW SPME which was quite suitable for ultra-selectively sampling trace volatile esters and alcohols from complicated food samples.
机译:通过简单快速的阳极氧化化学刻蚀方法,制备了一种新型的氧化铝纳米线(ANW)固相微萃取(SPME)纤维涂层,用于超选择性测定复杂食品中的挥发性酯和醇。基于扫描电子显微镜(SEM),对ANW SPME纤维涂层的制备条件(包括腐蚀液浓度和腐蚀时间)进行了优化,以获得更好的表面形态和更大的表面积。在最佳条件下,获得了ANW SPME纤维涂层的均匀氧化铝纳米线结构,平均厚度约为20μm。与大多数商业SPME纤维涂料相比,ANW SPME纤维涂料具有更高的萃取能力和对挥发性酯和醇的特殊选择性。最终,建立了一种以ANW SPME纤维涂层为核心的高效气体采样技术,并将其成功地用于气相色谱/质谱(GC)的超选择性测定复杂香蕉和发酵糯米样品中的痕量挥发性酯和醇。 / MS)检测。有趣的是,通过ANW SPME纤维涂层选择性地对30种确定的香蕉挥发性有机化合物(VOC)中的25种酯和2种醇和13种经鉴定的发酵糯米中的4种酯和7种醇进行了采样。此外,开发并验证了在特定存储或酿造阶段测定香蕉和发酵糯米样品中一些典型的挥发性酯和醇的新分析方法。香蕉和发酵糯米样品的回收率在108-115%范围内,相对标准偏差(RSD)为2.6-6.7%和80.0-91.8%,RSD为0.3-1.3%(n = 3)。这项工作提出了一种新颖,高效的ANW SPME气体采样技术,该技术非常适用于从复杂食品样品中超选择性地采样痕量挥发性酯和醇。

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