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Performance of an Integrated Solar-Greenhouse Photovoltaic Ventilated Dryer with Clay-CaCl_2 Energy Storage Desiccants for Tomato Drying

机译:含有粘土-CACL_2番茄干燥能量储存干燥剂的集成太阳能温室光伏通风机的性能

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The use of solar energy in drying of perishable crops such as tomatoes is a good alternative to the problem of post-harvest processing in tropical eastern African countries. A review of the literature revealed that most of the solar crop drying systems developed during the last five decades have small loading capacity and cannot operate during the night. Therefore, an integrated solar greenhouse dryer system [SGDS] with Clay-CaCl_2 desiccant energy storage system was designed and tested. Such SGDS have the advantage over other solar systems of high loading capacity and structural simplicity. In addition, they have relatively good thermal crop drying performance compared to most solar dryers. However, their main limitation, like most solar dryers, is their inability to dry at night. Therefore, to enhance night-time drying capacity, a prototype SGDS integrated with a low-cost Clay-CaCl_2 desiccant energy storage system was designed, fabricated, and tested. The drying performance of this prototype was evaluated using loads of fresh tomatoes during October - December 2019 at Nairobi, Kenya. The dryer was able to dry fresh tomatoes from 93.9% (mcwb) to 8.3% (mcwb) within 27hours with solar greenhouse drying efficiency of 23% during daytime and desiccant drying efficiency of 19.9% during nighttime. The drying rate for the two-day light drying was 0.985kg/h and 0.875kg/h respectively and that in night drying using desiccants was 0.34kg/h. Based on these results, it was concluded that prototype solar greenhouse dryer with Clay-CaCl_2 energy storage has great potential for drying perishable produce such as tomatoes in tropical countries.
机译:使用太阳能在干燥易腐作物,如西红柿是对热带东部非洲国家的收获后处理问题的良好替代方案。对文献综述显示,在过去五十年中开发的大多数太阳能作物干燥系统具有小的装载能力,不能在夜间运行。因此,设计并测试了粘土-CACL_2干燥剂储能系统的集成太阳能温室干燥机系统[SGDS]。这种SGDS在具有高负载能力和结构简单的其他太阳能系统的优点。此外,与大多数太阳能干燥器相比,它们具有相对良好的热作物干燥性能。然而,它们像大多数太阳能干燥器一样的主要限制是它们在夜间无法干燥。因此,为了增强夜间干燥能力,设计了与低成本粘土-CACL_2干燥剂能量存储系统集成的原型SGDS,制造和测试。在肯尼亚内罗毕的2019年10月 - 2019年12月期间,使用大量的新鲜西红柿评估了这种原型的干燥性能。干燥机能够在27小时内从93.9%(MCWB)的新鲜西红柿,到8.3%(MCWB),在白天的日光温室干燥效率为23%,干燥剂干燥效率为19.9%。两天光干干燥的干燥速率分别为0.985kg / h,分别为0.875kg / h,使用干燥剂在夜间干燥为0.34kg / h。基于这些结果,得出结论是,具有粘土-CACL_2能量存储的原型太阳能温室烘干机具有巨大的干燥易腐产品,如热带国家的西红柿。

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