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光谱技术应用的当代发展和新兴趋势:特别参考椰子(L.)。

Contemporary Developments and Emerging Trends in the Application of Spectroscopy Techniques: A Particular Reference to Coconut ( L.).

机构信息

Physiology, Biochemistry and Post-Harvest Technology Division, ICAR-Central Plantation Crops Research Institute, Kasaragod 671124, Kerala, India.

Dairy and Food Science Department, South Dakota State University, Brookings, SD 57007, USA.

出版信息

Molecules. 2022 May 19;27(10):3250. doi: 10.3390/molecules27103250.

Abstract

The number of food frauds in coconut-based products is increasing due to higher consumer demands for these products. Rising health consciousness, public awareness and increased concerns about food safety and quality have made authorities and various other certifying agencies focus more on the authentication of coconut products. As the conventional techniques for determining the quality attributes of coconut are destructive and time-consuming, non-destructive testing methods which are accurate, rapid, and easy to perform with no detrimental sampling methods are currently gaining importance. Spectroscopic methods such as nuclear magnetic resonance (NMR), infrared (IR)spectroscopy, mid-infrared (MIR)spectroscopy, near-infrared (NIR) spectroscopy, ultraviolet-visible (UV-VIS) spectroscopy, fluorescence spectroscopy, Fourier-transform infrared spectroscopy (FTIR), and Raman spectroscopy (RS) are gaining in importance for determining the oxidative stability of coconut oil, the adulteration of oils, and the detection of harmful additives, pathogens, and toxins in coconut products and are also employed in deducing the interactions in food constituents, and microbial contaminations. The objective of this review is to provide a comprehensive analysis on the various spectroscopic techniques along with different chemometric approaches for the successful authentication and quality determination of coconut products. The manuscript was prepared by analyzing and compiling the articles that were collected from various databases such as PubMed, Google Scholar, Scopus and ScienceDirect. The spectroscopic techniques in combination with chemometrics were shown to be successful in the authentication of coconut products. RS and NMR spectroscopy techniques proved their utility and accuracy in assessing the changes in coconut oil's chemical and viscosity profile. FTIR spectroscopy was successfully utilized to analyze the oxidation levels and determine the authenticity of coconut oils. An FT-NIR-based analysis of various coconut samples confirmed the acceptable levels of accuracy in prediction. These non-destructive methods of spectroscopy offer a broad spectrum of applications in food processing industries to detect adulterants. Moreover, the combined chemometrics and spectroscopy detection method is a versatile and accurate measurement for adulterant identification.

摘要

由于消费者对椰子产品的需求增加,椰子基产品中的食品欺诈数量不断增加。健康意识、公众意识的提高以及对食品安全和质量的日益关注,促使当局和各种认证机构更加关注椰子产品的认证。由于传统的椰子质量属性测定技术具有破坏性且耗时,因此目前无损检测方法的准确性、快速性和易于操作,且不会对样品造成损害,因此越来越受到重视。光谱方法,如核磁共振(NMR)、红外(IR)光谱、中红外(MIR)光谱、近红外(NIR)光谱、紫外可见(UV-VIS)光谱、荧光光谱、傅里叶变换红外(FTIR)光谱和拉曼(RS)光谱,对于确定椰子油的氧化稳定性、油的掺假以及椰子产品中有害添加剂、病原体和毒素的检测变得越来越重要,并且还用于推断食品成分的相互作用和微生物污染。本综述的目的是全面分析各种光谱技术以及不同的化学计量学方法,以成功地对椰子产品进行认证和质量测定。通过分析和编译从PubMed、Google Scholar、Scopus 和 ScienceDirect 等各种数据库中收集的文章,编写了本文稿。光谱技术与化学计量学相结合,被证明可成功用于椰子产品的认证。RS 和 NMR 光谱技术已被证明可用于评估椰子油化学和粘度特性的变化。FTIR 光谱已成功用于分析氧化程度并确定椰子油的真实性。对各种椰子样品进行的 FT-NIR 分析证实了在预测方面具有可接受的准确性水平。这些非破坏性光谱方法为食品加工业提供了广泛的应用,可用于检测掺杂物。此外,结合化学计量学和光谱检测方法是一种用于鉴定掺杂物的多功能和准确的测量方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/477b/9147692/e6b741c7f998/molecules-27-03250-g001.jpg

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