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用于食品安全与质量监测的智能气体传感器:进展、应用及未来方向

Intelligent Gas Sensors for Food Safety and Quality Monitoring: Advances, Applications, and Future Directions.

作者信息

Jayan Heera, Zhou Ruiyun, Sun Chanjun, Wang Chen, Yin Limei, Zou Xiaobo, Guo Zhiming

机构信息

China Light Industry Key Laboratory of Food Intelligent Detection & Processing, School of Food and Biological Engineering, Jiangsu University, Zhenjiang 212013, China.

Belt-and-Road Joint Laboratory on Smart Agriculture Technology and Equipment, School of Integrated Circuits, Jiangsu University, Zhenjiang 212013, China.

出版信息

Foods. 2025 Aug 1;14(15):2706. doi: 10.3390/foods14152706.

Abstract

Gas sensors are considered a highly effective non-destructive technique for monitoring the quality and safety of food materials. These intelligent sensors can detect volatile profiles emitted by food products, providing valuable information on the changes occurring within the food. Gas sensors have garnered significant interest for their numerous advantages in the development of food safety monitoring systems. The adaptable characteristics of gas sensors make them ideal for integration into production lines, while the flexibility of certain sensor types allows for incorporation into packaging materials. Various types of gas sensors have been developed for their distinct properties and are utilized in a wide range of applications. Metal-oxide semiconductors and optical sensors are widely studied for their potential use as gas sensors in food quality assessments due to their ability to provide visual indicators to consumers. The advancement of new nanomaterials and their integration with advanced data acquisition techniques is expected to enhance the performance and utility of sensors in sustainable practices within the food supply chain.

摘要

气体传感器被认为是一种用于监测食品材料质量和安全的高效无损技术。这些智能传感器能够检测食品释放出的挥发性成分,提供有关食品内部发生变化的有价值信息。气体传感器因其在食品安全监测系统开发中的众多优势而备受关注。气体传感器的适应性使其非常适合集成到生产线中,而某些传感器类型的灵活性则允许将其纳入包装材料。由于各种气体传感器具有不同特性,因此已被开发出来并应用于广泛的领域。金属氧化物半导体和光学传感器因其能够为消费者提供视觉指标,在食品质量评估中作为气体传感器的潜在用途而得到广泛研究。新型纳米材料的发展及其与先进数据采集技术的整合,有望提高传感器在食品供应链可持续实践中的性能和实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e5d1/12346065/b8f2225f125a/foods-14-02706-g001.jpg

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