Optical techniques in non-destructive detection of wheat quality: A review

Q2 Agricultural and Biological Sciences
Lei Li , Si Chen , Miaolei Deng , Zhendong Gao
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引用次数: 12

Abstract

Wheat quality detection is essential to ensure the safety of wheat circulation and storage. The traditional wheat quality detection methods mainly include artificial sensory evaluation and physicochemical index analysis, which are difficult to meet the requirements for high accuracy and efficiency in modern wheat quality detection due to the disadvantages of subjectivity, destruction of sample integrity and low efficiency. With the rapid development of optical technology, various optical-based methods, using near-infrared spectroscopy technology, hyperspectral imaging technology and terahertz, etc., have been proposed for wheat quality detection. These methods have the characteristics of non-destructiveness and high efficiency which make them popular in wheat quality detection in recent years. In this paper, various state-of-the-art optical-based techniques of wheat quality detection are analyzed and summarized in detail. Firstly, the principle and process of common optical non-destructive detection methods for wheat quality are introduced. Then, the optical techniques used in these detection methods are divided into seven categories, and the comparison of these technologies and their advantages and disadvantages are further discussed. It shows that terahertz technology is regarded as the most promising wheat quality detection method compared with other optical detection technologies, because it can not only detect most types of wheat deterioration, but also has higher accuracy and efficiency. Finally, the research of optical technology in wheat quality detection is prospected. The future research of optical technology-based wheat quality detection mainly includes the construction of wheat quality optical detection standardization database, the fusion of multiple optical detection technologies and multiple quality index information, the improvement of the anti-interference of optical technology and the industrialization of optical inspection technology for wheat quality. These studies are of great significance to improve the detection technology of wheat and ensure the storage safety of wheat in the future.

Abstract Image

小麦品质无损检测中的光学技术研究进展
小麦品质检测是保证小麦流通和储存安全的重要手段。传统的小麦品质检测方法主要包括人工感官评价和理化指标分析,存在主观性强、破坏样品完整性、效率低等缺点,难以满足现代小麦品质检测对高精度和高效性的要求。随着光学技术的快速发展,人们提出了利用近红外光谱技术、高光谱成像技术和太赫兹技术等多种基于光学的小麦品质检测方法。这些方法具有无损、高效的特点,近年来在小麦品质检测中得到广泛应用。本文对小麦品质的各种光学检测技术进行了详细的分析和总结。首先,介绍了常用的小麦品质光学无损检测方法的原理和过程。然后,将这些检测方法中使用的光学技术分为7类,并对这些技术进行了比较,并进一步讨论了它们的优缺点。结果表明,与其他光学检测技术相比,太赫兹技术被认为是最有前途的小麦品质检测方法,因为它不仅可以检测出大多数类型的小麦变质,而且具有更高的精度和效率。最后,对光学技术在小麦品质检测中的研究进行了展望。基于光学技术的小麦品质检测未来的研究方向主要包括:小麦品质光学检测标准化数据库的建设、多种光学检测技术与多种品质指标信息的融合、光学技术抗干扰性的提高以及小麦品质光学检测技术的产业化。这些研究对今后提高小麦的检测技术,保证小麦的储存安全具有重要意义。
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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来源期刊
CiteScore
7.30
自引率
0.00%
发文量
69
审稿时长
12 weeks
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