EventsThe 6th International Electronic Conference on Applied Sciences
Published
This submission belongs to the session S7. Food Science and Technology of the event The 6th International Electronic Conference on Applied Sciences
Published date
03 Dec, 2025
Academic Editor
author-avatarAntonios Koutelidakis
Citation
Sarvar Rejabov, Botir Shukurillayevich Usmonov, Komil Usmanov, Comparative analysis of drying techniques on the mineral retention and quality of apricots (Prunus armeniaca L.), in Proceedings of The 6th International Electronic Conference on Applied Sciences, 9 December–11 December 2025, MDPI: Basel, Switzerland
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Comparative analysis of drying techniques on the mineral retention and quality of apricots (Prunus armeniaca L.)

Komil Usmanov 1
1. Department of Automation and Digital Control, Tashkent Chemical-Technological Institute, Tashkent, 100011, Uzbekistan, Uzbekistan
Abstract

This study evaluates the impact of four drying methods—open sun drying, solar drying, infrared drying, and microwave drying—on the quality attributes and elemental retention of apricots (Prunus armeniaca L.). Experimental trials were conducted in June 2024 at the Tashkent Chemical–Technological Institute using equal quantities of fresh apricots. Drying was continued until the moisture content dropped below 20% (wet basis), followed by spectroscopic analysis to determine macro- and microelement concentrations. Solar-dried apricots showed the highest retention of essential nutrients: potassium (2.37%), silicon (0.538%), magnesium (0.145%), calcium (0.176%), and sulfur (0.152%). In contrast, open sun drying led to significant nutrient degradation and poor visual quality. Microwave drying preserved some micronutrients but resulted in surface scorching due to uneven heating. Infrared drying yielded acceptable results but required substantial energy input. Among all methods, solar drying provided the optimal balance of high product quality and energy efficiency. The specific energy consumption was effectively zero (0.00 kWh/kg) owing to exclusive reliance on solar radiation. This method supports sustainable food processing by reducing energy demand and greenhouse gas emissions while preserving nutritional quality. The results highlight solar drying as a promising, eco-friendly technique for preserving the nutritional integrity of agricultural products. These findings offer valuable scientific guidance for selecting appropriate drying technologies in the food processing industry, especially in regions with high solar potential.

Keywords
Apricot drying
Prunus armeniaca
solar dryer
elemental retention
food quality
energy efficiency
sustainable processing
infrared drying
microwave drying
open sun drying.
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