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Atmospheric pressure chemical ionisation (APCI) and photoionisation (APPI) mass spectrometry for detection of unsaturated fatty acids: potential for rapid detection of adulteration of vegetable oils

机译:用于检测不饱和脂肪酸的大气压化学电离(APCI)和去光化(APPI)质谱:快速检测植物油掺假的潜力

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摘要

Adulteration of vegetable oils to maximize profit is a worldwide problem. Atmospheric pressure chemical ionisation (APCI) and photoionisation (APPI) mass spectrometry methods were developed to detect the relative abundances of unsaturated fatty acids (FAs) present in vegetable oils with the objective of high throughput and rapid identification of adulteration. The ionisation efficiencies of both methods for unsaturated FA analysis, which are the most abundant in vegetable oils, have been found to be up to similar to 2 orders of magnitude higher than those for saturated FAs. Using a quick calibration process, unsaturated FAs can be rapidly (within similar to 2 min/sample) determined by comparison to standards (rapeseed oil), which allowed for calculation of correction factors for differences in ionisation efficiencies. Both techniques have been used in quick screening of the retail vegetable oils purchased in Sri Lanka and India. A simple chi-squared test has been applied to the C18 : 1, C18 : 2 and C18 : 3 FA experimental data. It is possible to differentiate e.g. olive, palm, sunflower, rapeseed, soya, mustard and other vegetable oils and make a quick decision based on chi-squared statistics regarding possible adulteration. The experimental values of FAs are in excellent agreement with those obtained by gas chromatography with a precision (RSD) of <3% for the most abundant FAs. The developed approach can be used for rapid screening of a large number of vegetable oil samples for possible adulteration prior to full GC analysis.
机译:植物油掺假以最大限度地利润是全球问题。开发了大气压化学电离(APCI)和光激酶(APPI)质谱法以检测植物油中存在的不饱和脂肪酸(FAS)的相对丰度,其目的是高通量和掺杂的快速鉴定。已经发现,对于植物油中最丰富的不饱和FA分析方法的电离效率是最多的2个数量级比饱和Fas。使用快速校准过程,通过与标准(油菜籽油)的比较确定的不饱和Fas可以快速(类似于2分钟/样品),这允许计算离子化效率的差异的校正因子。两种技术都用于快速筛选斯里兰卡和印度购买的零售植物油。简单的Chi方向测试已应用于C18:1,C18:2和C18:3 FA实验数据。可以区分例如橄榄,棕榈,向日葵,油菜籽,大豆,芥末和其他植物油,并根据有关可能掺假的奇平方统计进行快速决策。 FAS的实验值与通过气相色谱法获得的符合最优异的(RSD)为最丰富的FAS获得的那些。开发的方法可用于快速筛选大量植物油样品,用于在全GC分析之前可能掺杂。

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  • 来源
    《Analytical methods》 |2019年第30期|共10页
  • 作者单位

    Univ Manchester Sch Chem Oxford Rd Manchester M13 9PL Lancs England;

    Univ Manchester Sch Earth Atmospher &

    Environm Sci Manchester Lancs England;

    IAEA Joint FAO IAEA Div Nucl Tech Food &

    Agr Wagramer Str 5 POB 100 A-1400 Vienna Austria;

    Chinese Acad Agr Sci Haidian Dist 100081 Peoples R China;

    Sri Lanka Atom Energy Board Life Sci Div Colombo Wellampitiya Sri Lanka;

    Univ Peradeniya Peradeniya Central Sri Lanka;

    IAEA Joint FAO IAEA Div Nucl Tech Food &

    Agr Wagramer Str 5 POB 100 A-1400 Vienna Austria;

    Univ Sains Malaysia Sch Ind Technol Analyt Biochem Res Ctr Minden George Town Malaysia;

    Univ Delhi Soil Microbial Ecol &

    Environm Toxicol Lab Dept Zool New Delhi Delhi India;

    Chinese Acad Agr Sci Haidian Dist 100081 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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