针对国内生产过剩的环保型太阳能食品烘干机设计

IF 0.9 Q4 GEOCHEMISTRY & GEOPHYSICS Solar-Terrestrial Physics Pub Date : 2022-11-01 DOI:10.3390/solar2040029
L. Fernandes, J. R. Fernandes, P. Tavares
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引用次数: 6

摘要

太阳能干燥是有效利用太阳能以满足人类提高可持续性需求的众多方法之一。在这项研究中,我们描述了两个间接太阳能干燥机原型的构建和测试,特别是为蔬菜和水果设计的。烘干机有两个隔间:一个太阳能电池板和一个干燥室。烘干机主要由木材(原型1)和聚苯乙烯泡沫(原型2)制成,两者都使用回收铝罐。原型1和原型2太阳能电池板的计算产率分别为82%和77%。对不同的新鲜产品进行的干燥试验表明,根据产品的类型,在不同的时间内,所有新鲜产品都可以干燥到小于其初始重量的10%。至于苹果片,太阳能烘干机在原型1和原型2的湿基础上分别能够去除95.7%和95.0%的初始水分。并与同一产品的商用电动干燥机进行了对比试验,探讨了干燥动力学和成本。最终干燥产品的成本,不包括购买新鲜产品,电动烘干机为6.83欧元/公斤,原型1为1.78欧元/公斤,原型2为1.72欧元/公斤。脱水苹果片目前在市场上的售价约为每公斤34.50欧元。我们的太阳能烘干机可以在产品的整个生命周期内以非常低的成本干燥高质量的产品,这使它们能够与电力系统竞争,以更便宜和环保的方式防止食物浪费。
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Design of a Friendly Solar Food Dryer for Domestic Over-Production
Solar drying is one of the many ways of efficiently making use of solar energy to meet the human demand for improved sustainability. In this study, we describe the construction and testing of two indirect solar dryer prototypes, especially designed for vegetables and fruits. The dryers had two compartments: a solar panel and a drying chamber. The dryers were mainly made of wood (Prototype 1) and styrofoam (Prototype 2) and both used recycled aluminum cans. The calculated yield of solar panels was 82% and 77% for Prototype 1 and 2, respectively. The drying tests performed with different fresh products showed that it was possible to dry all of them until less than 10% of their initial weight, at different times, depending on the type of product. As regards the apple slices, the solar dryers were able to remove 95.7% and 95.0% of initial moisture on a wet basis for Prototype 1 and 2, respectively. Comparative tests were conducted with an electric commercial dryer using the same product to explore the drying dynamics and costs. The cost of the final dry product, excluding the purchase of fresh goods, was 6.83 €/kg for the electric dryer, 1.78 €/kg for Prototype 1 and 1.72 €/kg for Prototype 2. Dehydrated apple slices are currently available on the market for around 34.50 €/kg. Our solar dryers can dry quality products at a very low cost for their entire life span, which allows them to compete with electric systems to prevent food waste in a cheaper and environmentally friendly way.
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来源期刊
Solar-Terrestrial Physics
Solar-Terrestrial Physics GEOCHEMISTRY & GEOPHYSICS-
CiteScore
1.50
自引率
9.10%
发文量
38
审稿时长
12 weeks
期刊最新文献
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