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A rapid method for the determination of stable hydrogen isotope ratios of acetic acid in vinegar

메타 데이터

바이오화학분류
    • 바이오정밀화학
      1. 용매
    • 화장품용 기능성소재
      1. 계면활성제⁄증점제
    • 의료용 화학소재
      1. 식품첨가제
논문

A rapid method for the determination of stable hydrogen isotope ratios of acetic acid in vinegar

학술지

Rapid communications in mass spectrometry : RCM

저자명

Feng, Di; Wang, Daobing; Zhong, Qiding; Wu, Zhuying; Yue, Hongwei; Liu, Yang; Zhang, Luoqi

초록

<P>Rationale<P>Vinegar is an everyday condiment made from fermented grains or fruits. It contains acetic acid which is the main organic material produced by fermentation. Vinegar suffers from the authenticity problem of exogenous adulteration due to the indistinguishability of low&#x2010;cost chemical sources of synthetic acetic acid from acetic acid produced by fermentation. It is necessary to establish a simple and rapid measurement technique.</P></P><P>Methods<P>Determination was according to the total acid content of vinegar diluted with acetone to a certain concentration. Online separation and determination of acetic acid &delta;D in vinegar were carried out using gas chromatography-pyrolysis-isotope ratio mass spectrometry.</P></P><P>Results<P>An HP&#x2010;Plot/U column was selected for online separation of acetic acid and water with molecular sieve characteristics. At the same time, combined with the instrument blowback function to remove water. Dilute solvent acetone was treated with a molecular sieve to remove trace water. The reproducibility of this method is less than 3‰. The long&#x2010;term stability is within a reasonable error range. The accuracy correlation coefficient is greater than 0.99. The &delta;D values of acetic acid in vinegar (&#x2212;264.5 ± 20.3‰) and from chemical sources (&#x2212;30.5 ± 90.8‰) were obtained.</P></P><P>Conclusions<P>A rapid method was developed for identification of different sources of acetic acid. These different sources of acetic acid exhibited significant hydrogen isotope distribution characteristics. Additionally, it was observed that the carboxyl hydrogen of acetic acid exhibited facile exchange with water. In future investigations, we aim to mitigate this interference.</P></P>

발행연도

2024

발행기관

Wiley (John WileySons)

ISSN

0951-4198

ISSN

1097-0231

38

8

페이지

pp.e9718

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1 2023-12-11

논문; 2024-04-30

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