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September 10, 20250 citations

Design and Development of a Solar PV Based Evaporative Cooled Transit Storage Unit for Horticultural Products

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MSManagement Study

Key Points

  • The solar-operated cooling unit significantly improved vegetable shelf life by 2-5 days compared to ambient storage.
  • Cooling efficiency reached 84.12%, reducing temperature by up to 14.8°C in a controlled environment.
  • Using tomato, spinach, and radish, key quality metrics showed significant improvements in stored vegetables versus ambient conditions.
  • The design used affordable materials, leveraging solar energy for sustainability in small-scale farming and vegetable vending.

Abstract

Adequate cold storage facility for Horticultural products is critical due to their perishable nature. Green energy based evaporative cooling storage unit is a sustainable and efficient solution for small scale farmers and vegetable vendors in hot and dry climates who need to store their produce. Solar power operated evaporative cooling structures are low cost and efficient in reducing ambient temperature and increasing relative humidity, which increases the shelf-life of vegetables. A green energy-based evaporative cooling transit storage unit of 0.63m3 capacity was designed and fabricated. The transit unit was designed and operated as a a tricycle. Two suction fans (15.6W), submersible water pump (12W) and LED light (2.88Wp) were powered through two 100-Wp solar panels. Two batteries, 7Ah each were also used to store energy. The storage unit was made up of MS sheets of 1.2mm thick while a side of the system was made up of GI wire mesh with honeycomb pad. To test the performance of the developed unit tomato, spinach and radish were used. Results revealed that there was a significant difference (P=0.05) in PLW, firmness, TSS, and colour values of the vegetables when stored inside the unit compared to vegetables stored in ambient condition. The ambient temperature during the study was 32.2-43.4°C and RH was 21.1- 46%. The drop-in temperature was 7.8 to 14.8°C as compared to ambient conditions, while RH in the cooling chamber increased considerably to 84%. The average cooling efficiency obtained was 84.12%. The shelf life of stored vegetables inside the unit was 2-5 days higher than those kept under ambient conditions.

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Cite This Study

Management Study (2025) studied this question.

synapsesocial.com/papers/68c1c32754b1d3bfb60f1294https://doi.org/10.31234/osf.io/jfcbx_v1
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Development and performance evaluation of a portable solar‐assisted evaporative cool chamber for preservation of perishables2024 · 4 citations
  2. 2A Portable Solar-Assisted Evaporative Cooling Chamber (ECC) Designed to Prolong the Freshness of Fruits and Vegetables2024
  3. 3Automation of an Evaporative Cooling System for Agricultural Produce2025
  4. 4Designing and fabrication of evaporative cooler for enhancing tomato shelf life2024
  5. 5PERFORMANCE ASSESSMENT OF AN ARDUINO-CONTROLLED SOLAR-POWERED EVAPORATIVE COOLING SYSTEM FOR POST-HARVEST PRESERVATION OF TOMATOES AND HOT PEPPER IN SEMI-ARID NIGERIA2026