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射频加热技术在粮食储藏与加工中应用研究进展
作者姓名:李洪岳  李青鸾  郑建军  令博  王绍金
作者单位:西北农林科技大学 机械与电子工程学院,陕西杨凌 712100
摘    要:粮食的储藏与加工是保障国家粮食安全的重要环节。射频技术凭借具有穿透深度大、加热迅速、整体加热、无化学残留等特点,已广泛应用于粮食产后研究,并在部分领域工业化应用前景广阔。为深入了解射频加热技术在粮食储藏与加工中应用研究进展,本文首先对射频技术展开概述,阐述了射频加热的基本原理,并对目前商业化应用的射频加热系统的类型与特点进行介绍;从粮食与储粮害虫的介电特性、储粮害虫的耐热性和粮食的加热均匀性改善三个方面概述了目前射频在粮食储藏与加工中的基础研究;在此基础上,结合生产中面临的实际问题对该技术在粮食产后杀虫、灭菌、钝酶和干燥等方面的应用进行了总结;最后,就该技术应用于粮食储藏与加工尚存的问题与未来研究方向提出了建议。本文可为射频技术在粮食储藏与加工中的应用研究提供指导作用。

关 键 词:射频加热  产后粮食  杀虫  灭菌  钝酶  干燥  
收稿时间:2021-06-01

Recent Advances on Application of Radio Frequency Heating in the Research of Post-Harvest Grain Storage and Processing
Authors:LI Hongyue  LI Qingluan  ZHENG Jianjun  LING Bo  WANG Shaojin
Institution:College of Mechanical and Electronic Engineering, Northwest A&F University, Yangling 712100, China
Abstract:The storage and processing of grain are the basis for economic and social stability and development. As a new heating treatment technology based on electromagnetic wave, radio frequency technology has the characteristics of large penetration depth, rapid heating, volumetric heating and no chemical residue. It has been widely used in post-harvest research of grain and has potential industrial application prospects in some fields. To expound the research progress of the application of radio frequency heating technology in grain storage and processing, this review briefly described the basic principle and characteristics of radio frequency heating as well as the current commercial radio frequency heating system including free oscillation type and 50 Ω type. The basic research of radio frequency heating in grain storage and processing was summarized from three aspects: Dielectric properties of grain and pests, heat resistance of stored grain pests and heating uniformity of sample. The dielectric properties refer to the interaction between materials and electromagnetic waves in an electromagnetic field and determines the absorption and conversion of electromagnetic energy. It can predict the heating characteristics of grain and provide basic data for computer simulation to optimize process during radio frequency treatment. The heat resistance data of pests are necessary for the establishment and optimization of dis-infestations technology, so the kinetic date of thermal death of common stored grain pests were reported in this review. As a main hinder in the commercial application of radio frequency treatments, the heating uniformity has significant effect on heat treatment quality and results in potential food safety problems. The major factors causing heating non-uniformity are the non-uniformity of electromagnetic field, runaway heating and the sample shape effect. The improvement methods of heating uniformity were summarized from three aspects in this article including changing the electromagnetic field distribution, sample position, and optimizing the radio frequency working parameters. Based on the above basic research of radio frequency technology and combining with the practical problems in grain storage and processing, the applications of radio frequency heating in the fields of dis-infestations, sterilizing, enzyme inactivation and drying were also summarized. Finally, some suggestions on the application of this technology in grain storage and processing and future research directions were proposed. This review may play a certain guiding role for the application of radio frequency technology in grain storage and processing.
Keywords:radio frequency heating  post-harvested grain  disinfestation  pasteurization  enzyme inactivation  drying  
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