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杂交温室干燥机内苦瓜片干燥动力学及经济分析

Drying kinetics and economic analysis of bitter gourd flakes drying inside hybrid greenhouse dryer.

作者信息

Ahmad Asim, Prakash Om, Kumar Anil

机构信息

Department of Mechanical Engineering, Birla Institute of Technology, Ranchi, Mesra, India.

Faculty of Engineering & Applied Sciences, Usha Martin University, Ranchi, India.

出版信息

Environ Sci Pollut Res Int. 2023 Jun;30(28):72026-72040. doi: 10.1007/s11356-021-17044-x. Epub 2021 Nov 10.

Abstract

In this study, a heat storage-based hybrid greenhouse dryer has been developed and analysed for drying bitter gourd flakes under the climatic condition of Ranchi, India. Proposed heat storage-based hybrid greenhouse dryer consists of a solar air heater with a 2.12-m area, greenhouse dryer and DC fan to induce and force the air. The significant objective of the present study is to analyse the drying efficiency, drying kinetics, property analysis, economic analysis, embodied energy and CO mitigation of the hybrid greenhouse dryer for drying of bitter gourd flakes. An experiment was performed simultaneously on proposed system and open sun drying for the proper comparative analysis. Moisture contents reduced from 88.14 to 10.14% in 6 h in proposed dryer and 88.14 to 11.01% in 15 h for open system. Thus, significant drying time is reduced in proposed system by 8 h as compared to open system. Environmental impact analysis shows that the energy payback time was found to be 0.4907 years only. Cost of the proposed system dryer is 22664.30 INR. The total embodied energy is found 1591.07 kWh and earned carbon credit ranges from 16844.76 to 67379.05 INR, while CO mitigation was 46.28 tonnes for 35 years of expected lifetime. Seven standard mathematical models for drying of bitter gourd flakes were studied. Ahmad and Prakash model was found to be the best as compared to other models. The metal contents of dried bitter gourd flakes were also examined. Bitter gourd dried in proposed dryers possesses superior metal content as compared to open systems. Impact analysis demonstrates that the hybrid greenhouse dryer is more suitable for reducing post-harvest loss with environmental sustainability.

摘要

在本研究中,已开发并分析了一种基于蓄热的混合温室干燥机,用于在印度兰契的气候条件下干燥苦瓜片。所提出的基于蓄热的混合温室干燥机由一个面积为2.12平方米的太阳能空气加热器、温室干燥机和用于诱导和推动空气的直流风扇组成。本研究的重要目标是分析混合温室干燥机干燥苦瓜片的干燥效率、干燥动力学、特性分析、经济分析、隐含能源和二氧化碳减排情况。对所提出的系统和露天晾晒同时进行了实验,以进行适当的对比分析。在所提出的干燥机中,水分含量在6小时内从88.14%降至10.14%,而在露天系统中,水分含量在15小时内从88.14%降至11.01%。因此,与露天系统相比,所提出的系统显著减少了8小时的干燥时间。环境影响分析表明,能源回收期仅为0.4907年。所提出的系统干燥机成本为22664.30印度卢比。总隐含能源为1591.07千瓦时,获得的碳信用额度在16844.76至67379.05印度卢比之间,而在预期使用寿命35年内的二氧化碳减排量为46.28吨。研究了七种用于干燥苦瓜片的标准数学模型。与其他模型相比,发现艾哈迈德和普拉卡什模型是最佳模型。还检测了干燥苦瓜片的金属含量。与露天系统相比,在所提出的干燥机中干燥的苦瓜具有更高的金属含量。影响分析表明,混合温室干燥机更适合在环境可持续的情况下减少收获后损失。

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