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经济分析和番茄酱干燥用地热辅助太阳能干燥器的干燥动力学。

Economic analysis and drying kinetics of a geothermal-assisted solar dryer for tomato paste drying.

机构信息

Laboratory of New and Renewable Energy Development in Arid and Saharan Zones, LENERZA, Kasdi Merbah University, Ouargla, Algeria.

Department of Mechanical Engineering, Faculty of Applied Sciences, Kasdi Merbah University, Ouargla, Algeria.

出版信息

J Sci Food Agric. 2021 Dec;101(15):6542-6551. doi: 10.1002/jsfa.11326. Epub 2021 Jun 3.

Abstract

BACKGROUND

The economic value of many fruit and vegetables is often linked to the ability to preserve such natural products. In the case of tomatoes, the manufacture of 1 kg of powder or concentrate requires the evaporation of about 16 kg water kg dry matter. In the present work, the effectiveness and economic analysis of solar drying systems for drying of tomato paste with and without geothermal water heat exchanger (GWHE) were studied.

RESULTS

The GWHE integration significantly increased the recorded drying temperature up to 53.41 °C, with an improvement of 11.5 °C compared to the conventional dryer. Moreover, the drying temperature inside the drying chamber exceeded ambient temperature after sunset and at night by 30.8 °C. GWHE ensured a continuous drying process, while drying time was 22 consecutive hours, compared to the basic dryer with 18 h in 3 days. Effective moisture diffusivity was found to be 1.617 × 10 and 1.202 × 10  m  s for hybrid and basic drying systems, respectively, using the slope. Three methods were used to perform economic analysis. The cumulative present worth of savings, at 23 382.6 USD, is much higher than the capital cost of the hybrid dryer, at 467 USD. The payback period is quite acceptable, at 2.21 years as compared to dryer lifetime of 15 years. Therefore, the hybrid dryer will dry tomato paste without additional charges for 12.79 years and is recommended for a large-scale tomato paste dryer.

CONCLUSION

The hybrid system with GWHE ensures a continuous drying process during night-time, in addition to reduced drying time. The economic study revealed a high feasibility for the hybrid dryer, with a short payback period. © 2021 Society of Chemical Industry.

摘要

背景

许多水果和蔬菜的经济价值往往与其保持天然产品的能力有关。以番茄为例,制造 1 公斤粉末或浓缩物需要蒸发约 16 公斤水公斤干物质。在本工作中,研究了带和不带地热水换热器 (GWHE) 的太阳能干燥系统对番茄糊干燥的效果和经济分析。

结果

GWHE 集成显著提高了记录的干燥温度,最高可达 53.41°C,与传统干燥器相比提高了 11.5°C。此外,干燥室内部的干燥温度在日落后和夜间超过环境温度 30.8°C。GWHE 确保了连续的干燥过程,而干燥时间为 22 小时连续,而基本干燥器在 3 天内需要 18 小时。使用斜率法,发现混合和基本干燥系统的有效水分扩散系数分别为 1.617×10 和 1.202×10 m 2 s。采用三种方法进行经济分析。累计节约现值为 23382.6 美元,远高于混合干燥器的资本成本 467 美元。投资回收期相当可接受,为 2.21 年,而干燥器的使用寿命为 15 年。因此,混合干燥器将在没有额外费用的情况下干燥番茄糊 12.79 年,建议用于大型番茄糊干燥器。

结论

带 GWHE 的混合系统除了缩短干燥时间外,还确保了夜间的连续干燥过程。经济研究表明,混合干燥器具有很高的可行性,投资回收期短。 © 2021 化学工业协会。

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