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Non-chemical on-farm hermetic maize storage in East Africa.

机译:东非的非化学农场气密性玉米存储。

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摘要

A primary problem of agricultural practice, food sufficiency, and the associated economic security for several subsistence farmers and dependent population is the lack of adequate and affordable grain storage equipments. Most previous approach to maize preservation relied on the use of chemicals. However, this research attempted to define general optimum storage conditions under different temperature, moisture and time conditions, while using a non-chemical (hermetic) approach for maize preservation.;Two studies were conducted to test the efficacy of hermetic storage system in controlling oxygen supply and maize weevil population and to test the effect of maize moisture and temperature on weevil mortality. A system was designed for the first experiment to monitor the percentage weevil mortality under hermetic conditions, over time, in both low and high moistures as well as temperature combinations. The treatment jars containing maize at two moistures (6.3 and 16%) and weevils were randomly assigned to two temperature chambers (10 and 27°C). The second experiment utilized oxygen sensors, a microcontroller and a computer running a Visual Basic 6.0 program to monitor the oxygen concentration within jars containing maize (at 8 and 16% moisture) and weevils, exposed to the two temperature chambers. Together, the two studies applied direct and indirect methods of weevil quantification.;Experiment one's design consisted of four factorials (time, maize moisture, temperature, and replication), with weevil mortality being the dependent variable. Days had five levels (2nd, 4th, 6th, 8th, and 10th), maize moisture had two levels (6.3% and 16%), temperature had two levels (10°C and 27°C), and replications had four levels.;Experiment two consisted of hermetic canning jars into which ninety weevils and about 185 g of maize, at the appropriate moisture levels were loaded. The jars were randomly assigned to the temperature chambers and connected to the data acquisition system, consisting of a computer and microcontroller used for the graphic user interface (GUI) and data acquisition.;The results indicate highly significant hermetic, temperature and moisture effects on weevil mortality, and also indicate the efficacy of hermetic storage under the conditions tested.
机译:对于一些自给农民和受抚养人口而言,农业实践,粮食充足以及相关的经济安全的主要问题是缺乏足够的和负担得起的粮食储存设备。以前的大多数玉米保存方法都依赖于化学药品的使用。然而,这项研究试图定义在不同温度,湿度和时间条件下的一般最佳储存条件,同时使用非化学(密封)方法来保存玉米。;进行了两项研究,以测试密封储存系统在控制氧气方面的功效供应玉米象鼻虫种群,并测试玉米水分和温度对象鼻虫死亡率的影响。为第一个实验设计了一个系统,该系统可在封闭条件下随时间推移在低湿度和高湿度以及温度组合下监测象鼻虫死亡率的百分比。将装有两种水分(6.3%和16%)和象鼻虫的玉米的处理罐随机分配到两个温度箱(10和27°C)中。第二个实验利用氧气传感器,微控制器和运行Visual Basic 6.0程序的计算机来监视装有玉米(水分含量为8%和16%)和象鼻的广口瓶,并暴露于两个温度室内。两项研究共同使用了象鼻虫定量的直接和间接方法。实验设计由四个因子(时间,玉米水分,温度和复制)组成,象鼻虫死亡率是因变量。一天有五个级别(第二,第四,第六,第八和第十),玉米水分有两个级别(6.3%和16%),温度有两个级别(10°C和27°C),复制有四个级别。 ;实验二由密闭的罐头罐组成,其中装有90只象鼻虫和约185 g玉米,水分含量适当。将广口瓶随机分配到温度室中,并连接到数据采集系统,该系统由用于图形用户界面(GUI)和数据采集的计算机和微控制器组成;结果表明对象鼻虫的密封,温度和湿度影响非常明显死亡率,也表明在测试条件下密封储存的功效。

著录项

  • 作者

    Yakubu, Ali.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Agriculture Food Science and Technology.;Engineering Agricultural.
  • 学位 M.S.
  • 年度 2009
  • 页码 147 p.
  • 总页数 147
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农产品收获、加工及贮藏;农业工程;
  • 关键词

  • 入库时间 2022-08-17 11:37:37

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