用乙醇的非交换氢稳定同位素和碳同位素比质谱法确定糖和糖蜜的来源

IF 7.4 Q1 FOOD SCIENCE & TECHNOLOGY Food frontiers Pub Date : 2024-05-02 DOI:10.1002/fft2.418
Macarena Rojas-Rioseco, Hafiz Imran Fakhar, Ivan Smajlovic, Margarita Smajlovic, Stevan Grkavac, Mecit Halil Oztop, Muhammad Qasim Hayat, Rosario del P. Castillo
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引用次数: 0

摘要

由于甜菜和甘蔗的生产成本不同,这两种糖很容易被贴上欺诈性标签,本研究探讨了如何区分这两种糖。研究旨在利用新型分析技术,通过植物来源鉴定这些产品的真伪。该研究利用乙醇同位素测量-同位素比质谱法(IRMS)对非交换性氢稳定同位素进行测量,同时利用元素分析仪-IRMS 对碳稳定同位素进行分析,准确鉴定了各种糖和糖蜜样品的来源,找出了贴错标签的商品,并确定了以前来源不明的产品的来源。这些方法还能有效揭示糖和糖浆的掺假情况,并量化此类欺诈行为的程度。综合同位素分析证明了它们作为打击制糖业虚假宣传和掺假行为的有力工具的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Determining sugar and molasses origin by non-exchangeable hydrogen stable isotope of ethanol and carbon isotope ratio mass spectrometry

This study explores the differentiation of sugar and molasses produced from sugar beet and cane, which are susceptible to fraudulent labeling due to differing production costs. The research aimed to authenticate these products by botanical origin using novel analytical techniques. Utilizing ethanol isotopic measurement–isotope ratio mass spectrometry (IRMS) for non-exchangeable hydrogen stable isotopes alongside carbon stable isotopes analysis through elemental analyzer–IRMS, the study accurately identified the origin of various sugar and molasses samples, pinpointed mislabeled goods, and determined the source of products with previously unknown provenance. These methods were also effective in revealing sugar and molasses adulteration and quantifying the extent of such fraud. The combined isotope analyses demonstrated their potential as robust tools for combating misrepresentation and adulteration in the sugar industry.

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CiteScore
10.50
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审稿时长
10 weeks
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