Detection of Low Dose-Gamma Irradiated Spices by Photostimulated Luminescence (PSL) Technique

Q3 Multidisciplinary
F. Shamsudin, M. Yasir
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引用次数: 0

Abstract

Photostimulated Luminescence (PSL) has been widely used as a rapid screening technique for the detection of various irradiated foods. This study aims to investigate the efficacy of the PSL technique in the detection of low dose-gamma irradiated spices available in the Malaysia market. Samples of clove, coriander, fenugreek, turmeric powder and curry powder were irradiated at very low doses; 0 (control), 0.2, 0.5 and 1 kGy using Cobalt-60 as a source. PSL measurements and analysis were undertaken under subdued lighting following EN 13751 methods. The PSL value in the form of photon counts (PCs/60s) of all samples as a function of the irradiation dose after 7 days of storage were determined which revealed that the PSL value increases proportionally to the radiation dose applied. The PSL also was able to discriminate between the non-irradiated (<700 PCs/60s, negative) and irradiated (>5000 PCs/60s, positive) samples after 7 days of storage. Coriander generates the highest PCs at the lowest dose (0.2 kGy) and highest dose (1 kGy) after that storage period. The PSL value of all spice samples is considered accurate and consistent at all irradiation doses. This technique is highly reliable for the detection of irradiated spices available in the Malaysia market.
光激发发光(PSL)技术检测低剂量γ辐照香料
光激发发光(PSL)技术作为一种快速筛选技术已被广泛应用于各种辐照食品的检测。本研究旨在调查PSL技术在马来西亚市场上检测低剂量γ辐射香料的功效。丁香、香菜、胡芦巴、姜黄粉和咖喱粉的样品受到极低剂量的辐射;0(对照),0.2,0.5和1 kGy使用钴-60作为源。PSL测量和分析在柔和照明下按照EN 13751方法进行。测定了储存7天后所有样品的光子计数(PCs/60s)的PSL值与辐照剂量的关系,结果表明,PSL值随辐照剂量的增加而成比例增加。PSL还能够在储存7天后区分未辐照(5000 PCs/60s,阳性)的样品。在最低剂量(0.2 kGy)和最高剂量(1 kGy)下,香菜产生的pc量最高。所有香料样品的PSL值在所有辐照剂量下都被认为是准确和一致的。这项技术是高度可靠的检测辐照香料可在马来西亚市场。
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来源期刊
Songklanakarin Journal of Science and Technology
Songklanakarin Journal of Science and Technology Multidisciplinary-Multidisciplinary
CiteScore
1.10
自引率
0.00%
发文量
0
审稿时长
25 weeks
期刊介绍: Songklanakarin Journal of Science and Technology (SJST) aims to provide an interdisciplinary platform for the dissemination of current knowledge and advances in science and technology. Areas covered include Agricultural and Biological Sciences, Biotechnology and Agro-Industry, Chemistry and Pharmaceutical Sciences, Engineering and Industrial Research, Environmental and Natural Resources, and Physical Sciences and Mathematics. Songklanakarin Journal of Science and Technology publishes original research work, either as full length articles or as short communications, technical articles, and review articles.
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