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用于产品干燥的混合式混合模式太阳能干燥器的开发。

Development of a hybrid mixed-mode solar dryer for product drying.

作者信息

Afzal Arslan, Iqbal Tahir, Ikram Kamran, Anjum Muhammad Naveed, Umair Muhammad, Azam Muhammad, Akram Sajeela, Hussain Fiaz, Ameen Ul Zaman Muhammad, Ali Abid, Majeed Faizan

机构信息

Faculty of Agricultural Engineering & Technology, PMAS Arid Agriculture University, Rawalpindi, Pakistan.

Department of Agricultural Engineering, KFUEIT, Rahim Yar Khan, 64200, Pakistan.

出版信息

Heliyon. 2023 Feb 28;9(3):e14144. doi: 10.1016/j.heliyon.2023.e14144. eCollection 2023 Mar.

Abstract

Sun drying in the open air is quite popular worldwide. However, the use of solar dryers to preserve various perishable agricultural products is a relatively new area of study, and the long-term effects of this method are not yet fully understood. The slow drying process in direct sunlight can contaminate the dried materials by soil and insects. To overcome these challenges, we devised a sun drying system that included a heating part, a drying area, a portable stand, fans, and a 50-W photovoltaic panel. An alternate energy source was used to power the drying process during cloudy days and at night. Fresh Freestone peach, Golden apple, and Anaheim chilies weighing 10 kg each with the initial moisture content of 89%, 87%, and 75% on a wet basis (w.b), respectively, were used in the experiments. The final moisture content of the samples was reduced by an average of 16%, 15%, and 11% for Freestone peaches, Golden apples, and Anaheim chilies, respectively. The quality analysis was carried out to determine sample composition, total bacteria, and color of dried products. The results indicated that the dried products met the recommended quality standards for food products in terms of composition, total bacteria, and color. This research supports the use of a hybrid mixed-mode solar dryer for drying a wide range of perishable agricultural products.

摘要

在户外进行日光晾晒在全球范围内都相当普遍。然而,使用太阳能干燥机来保存各种易腐农产品是一个相对较新的研究领域,且这种方法的长期效果尚未完全明晰。在直射阳光下缓慢的干燥过程可能会使干燥后的物料受到土壤和昆虫的污染。为克服这些挑战,我们设计了一种日光晾晒系统,该系统包括一个加热部件、一个干燥区域、一个便携式支架、风扇以及一块50瓦的光伏板。在阴天和夜间,使用替代能源为干燥过程提供动力。实验采用了新鲜的离核蜜桃、金冠苹果和阿纳海姆辣椒,每种的重量均为10千克,湿基初始含水量分别为89%、87%和75%。离核蜜桃、金冠苹果和阿纳海姆辣椒样品的最终含水量分别平均降低了16%、15%和11%。对干燥后的产品进行了质量分析,以确定其成分、总细菌数和颜色。结果表明,干燥后的产品在成分、总细菌数和颜色方面均符合食品推荐质量标准。这项研究支持使用混合模式太阳能干燥机来干燥多种易腐农产品。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3dc/10006682/306a63424775/gr1.jpg

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