颗粒状农产品干燥技术与工艺的研究进展(英文)
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1.河南工业大学粮食和物资储备学院;2.河南中科智能装备有限公司

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花生热泵-红外联合干燥机理与技术开发研究,省粮油资源转化与利用重点实验室开放项目(24400017);射频-热风联合干燥虎皮果技术研究,农业农村部农产品产地初加工重点实验室开放项目(KLAPPP-2023-02)


Research Progress on Drying Technology and Process for Granular Agricultural Products
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Affiliation:

1.Henan University of Technology School of Food and Strategic Reserves;2.Henan Zhongke Intelligent Equipment Co

Fund Project:

Research on the mechanism and technology development of peanut heat pump-infrared combined drying, Open Project of Provincial Key Laboratory of Cereal Resource Transformation and Utilization (24400017); Research on the technology of radiofrequency-hot air combined drying of tiger nuts, Open Project of Key Laboratory of Primary Processing of Agricultural Products at Place of Origin of Agriculture, Ministry of Agriculture and Rural Development (KLAPPP-2023-02).

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    摘要:

    颗粒状农产品是全球70%以上人口的主食来源,也是食品加工链的核心原料和国际贸易的重要经济杠杆。收获季节不及时干燥,易引发霉变、发芽或变质,直接导致粮食安全和经济损失。由于颗粒状农作物的多孔性和干燥过程中的应力裂变问题,日晒和热风干燥以及不能满足其干燥需求。本文首先介绍了微波,红外干燥在颗粒状农作物中的应用和优缺点接着引出了微波热风,红外热风,红外微波干燥相比于单一干燥技术的干燥速率和品质的提升,同时总结了微波真空,远红外真空,流化床干燥在该领域的应用成果和研究热点。文章最后论述了射频,欧姆,热泵干燥等新型干燥技术应用和发展展望。本文通过对比分析干燥速率、能耗与品质参数,为新型干燥装备研发与工艺优化提供理论支撑,助力实现“高效-低碳-高质”的干燥目标,对保障粮食安全与农业可持续发展具有重要意义。

    Abstract:

    Granular agricultural products are constituted as a staple food source for over 70% of the global population, are recognized as a core component within the food processing chain, and are accorded significant economic importance in international trade. It has been extensively documented that inadequate desiccation during harvest seasons is associated with the facilitation of mould proliferation, the induction of germination processes, and the acceleration of product deterioration. These outcomes are manifested through compromised food security and incurred economic losses. Nevertheless, the porous structural characteristics inherent to granular crops, combined with the stress fission challenges encountered during dehydration processes, render alternative methods such as solarisation and hot air drying frequently inadequate for meeting crop-specific drying requirements. In this study, the implementation and relative merits of microwave and infrared drying technologies for granular crops are systematically examined. Subsequently, the enhanced drying efficiency and quality parameters achieved through microwave-hot air, infrared-hot air, and infrared-microwave hybrid drying systems are quantitatively demonstrated in comparison with conventional single-mode drying approaches. A comprehensive synthesis is presented regarding experimental findings and research priorities associated with microwave-vacuum, far-infrared vacuum, and fluidised bed drying applications.The developmental potential of emerging desiccation technologies – including radio frequency, ohmic, and heat pump-based systems – is critically evaluated through comparative analysis of dehydration kinetics, energy efficiency metrics, and product quality indices. A theoretical framework is established for the optimization of novel drying equipment and operational parameters. This systematic investigation contributes substantively to the realization of energy-efficient, low-carbon, and quality-preserving drying objectives, thereby providing crucial technical support for global food security initiatives and sustainable agricultural practices.

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  • 收稿日期:2025-03-17
  • 最后修改日期:2025-05-14
  • 录用日期:2025-05-23
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