首页> 外文会议>Annual International Meeting of the American Society of Agricultural and Biological Engineers >Industrial-scale Radio Frequency Treatments for Insect Control in In-shell Walnuts
【24h】

Industrial-scale Radio Frequency Treatments for Insect Control in In-shell Walnuts

机译:壳牌昆虫控制的工业规模射频处理

获取原文

摘要

Prior to the 2005 ban, in-shell walnuts were routinely fumigated with methyl bromide for insect control before export. Several pilot scale radio frequency (RF) studies have been reported as a new technology to completely control the most heat resistant insect, navel orangeworms, in in-shell walnuts without significant quality degradation. It is important to transfer pilot-scale or laboratory research results to large-scale industrial implementations. Heating uniformity is one of the most important considerations in scaling up of the established treatment protocol for walnuts. Temperature variations after RF heating may result from the different properties of walnuts and non-uniform electromagnetic field. It is desirable to determine the heating uniformity for a given RF unit and minimize the effect of walnut orientations and positions by stirring the walnuts during RF treatment. The required heating uniformity was achieved with one intermittent mixing at the electrode gap of 280 mm under the hot air temperature around 60 deg C for a continuous RF process. The average kernel and surface temperatures were around 55 deg C and 60 deg C after RF treatments, respectively. The efficacy treatments were conducted using a 25 kW, 27 MHz RF system at a conveyor belt speed of 57m/h. The results based on three replicates showed that 100% mortality of fifth-instar navel orangeworms was achieved with an acceptable walnut quality according to the industrial standard of peroxide, fatty acid and colour values. If this method could be economically integrated into the handling process, it would be an effective alternative to methyl bromide fumigation for disinfesting walnuts.
机译:在2005年禁止之前,在出口前用甲基溴进行甲基溴而常规熏蒸壳核桃。已经报告了几种试点级别的射频(RF)研究是一种全新技术,可以完全控制最耐热的昆虫,脐橙,在壳体核桃中,没有显着质量的降解。将试验规模或实验室研究结果转移到大型工业实施方面是重要的。加热均匀性是在核桃的已建立的治疗方案中扩大的最重要的考虑之一。 RF加热后的温度变化可能由核桃和非均匀电磁场的不同性质产生。期望确定给定RF单元的加热均匀性,并通过在RF处理期间搅拌核桃来最小化核桃方向和位置的作用。通过在热空气温度下在60℃的热空气温度下在280mm的电极间隙处的一个间歇混合在60℃下进行连续的RF工艺来实现所需的加热均匀性。分别在射频处理后平均籽粒和表面温度约为55℃和60℃。在57m / h的传送带速度下使用25kW,27MHz的RF系统进行疗效处理。基于三次重复的结果表明,根据过氧化物,脂肪酸和颜色值的工业标准,通过可接受的核桃质量实现了5%的第五型脐橙死亡率。如果该方法可以在处理过程中经济地集成到处理过程中,这将是对消毒核桃的甲基溴熏蒸的有效替代方案。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号