太阳能与储能混合干燥辣椒的试验研究

IF 2.1 4区 环境科学与生态学 Q3 ENGINEERING, CHEMICAL
Gopinath Govindan Radhakrishnan, Muthuvel Sattanathan, Rajesh Kanna Govindhan Radhakrishnan, Saravana Kumar Selvam
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引用次数: 0

摘要

相变材料(PCM)在热储能(TES)应用中是一种有用的材料。高潜热(LH)值、不可燃性和低成本使其成为太阳能TES的首选材料。农作物干燥是保存农作物的重要过程,为几个农业部门服务。太阳能干燥是一种相对廉价但有效的干燥农产品的方法。本研究探讨了有机石蜡作为PCM在可移动式太阳能干燥器中的应用潜力。本实验采用有机石蜡PCM作为储热材料。在传统的太阳能干燥机中使用pcm填充地板来减少蔬菜作物的干燥时间,这是本工作的新颖之处。该工作对比了辣椒的干燥表现在直接开放的太阳能干燥没有和与200克微胶囊和宏胶囊的PCM。此外,太阳能干燥机生产的辣椒干的品质和质地优于露天干燥机生产的辣椒干。用微型PCM干燥的辣椒比用太阳能干燥机烘干的宏观PCM干燥速度快。不带PCM的太阳能干燥机比带微观和宏观PCM的太阳能干燥机干燥时间更长。PCM用量增加,干燥时间缩短。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental investigation of hybrid solar drying with thermal energy storage systems for drying chili

A phase change material (PCM) is a useful material in thermal energy storage (TES) applications. The high latent heat (LH) values, noninflammable nature, and low cost make them a preferred material in solar TES. The drying of crops is an essential process for preserving agricultural crops that serves for several agricultural sectors. Solar drying is comparatively inexpensive yet an effective method to dry agricultural products. In this study, the potential of organic paraffin wax as PCM in a movable solar dryer has been investigated. In this experiment, heat-storage materials, organic paraffin wax PCM were used. The use of a PCM-packed floor in a traditional solar dryer used to decrease the drying period of vegetable crops is novel in this work. The work contrasts the drying presentation of chili among direct open solar drying without and with 200 g of microencapsulated and macro encapsulated PCM. Furthermore, the quality and texture of dried chili produced by solar dryers are better to those produced by open sun drying. Chili dried with micro PCM can dried faster when compared with macro PCM with solar dryer. The solar dryer without PCM can take more drying time when compared with solar dryer with micro and macro PCM. Also, the amount of PCM increased the drying time decreases.

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来源期刊
Environmental Progress & Sustainable Energy
Environmental Progress & Sustainable Energy 环境科学-工程:化工
CiteScore
5.00
自引率
3.60%
发文量
231
审稿时长
4.3 months
期刊介绍: Environmental Progress , a quarterly publication of the American Institute of Chemical Engineers, reports on critical issues like remediation and treatment of solid or aqueous wastes, air pollution, sustainability, and sustainable energy. Each issue helps chemical engineers (and those in related fields) stay on top of technological advances in all areas associated with the environment through feature articles, updates, book and software reviews, and editorials.
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