Skip to content
Research Article Open access CC BY 4.0

A Study on Low Cost Post Harvest Storage Techniques to Extend the Shelf Life of Citrus Fruits and Vegetables

Fahmida Ishaque, Md. Altaf Hossain, Md. Abdur Rashid Sarker, Md. Yunus Mia, Atik Shahriar Dhrubo, Gazi Tamiz Uddin, Md. Hafizur Rahman

Journal of Engineering Research and Reports · pp. 1–17 · Published 23 Dec 2019

10.9734/jerr/2019/v9i117009

Abstract

An attempt was made to develop low cost porous evaporative cooling storage structures for extending the shelf life of citrus fruits and vegetables at the Sylhet Agricultural University campus, Bangladesh. Clay soil, bamboo and straw were used as a wall material. Sand, clay, zeolite, rice husk and charcoal etc. were used as a pad material. But the mixture of sand and clay was found as the most efficient pad materials for lowering temperature. Porous evaporative cooling storage structure (PECSS) was developed to reduce the problems of post-harvest losses at farmer level. It is eco-friendly and no energy requirements for storage of vegetables and fruits. PECSS improves the quality and productivity of vegetables and citrus fruits by reducing temperature, prolonging shelf life and reducing post-harvest losses respectively. The study revealed that shelf life of egg-plant (Solanum melongena) was 11 days in PECSS condition and it was 6 days in ambient condition. Therefore, weight loss was 4.07% for PECSS and 11.84% in room condition respectively. Storage life of Ladies finger (Abelmoschus esculentus) was 6 days more in PECSS condition than room condition. Weight loss was 6.62% in PECSS condition and 17.47% loss in ambient condition. In case of Malabar Spinach (Basella alba) it was 6 days for PECSS condition and 3 days for room condition and weight loss was found to be 9.48% and 16.17% respectively. The shelf life of stem amaranth (Amaranthus cruentus) was 5 days in PECSS condition and 2 days in ambient condition. Weight loss was found 7.05% at PECSS condition and 28.62% as in-room condition. By chemical analysis for fruits lemon (Citrus limon) and orange (Citrus sinensis) found that pH and TSS were increased both ambient and PECSS condition but in PECSS condition this rate was less than ambient condition. Vitamin C, percentage juice content, citric acid values all were decrease at both condition but in PECSS condition its rate was the less ambient condition. There is scope for intensive study to improve the firmness of the porous evaporative cooling storage structure (PECSS) to reduce the storage loss of vegetables and citrus fruits for different region and its suitability for large scale design.

Shelf life citrus fruits vegetables porous evaporative cooling pad materials

Cited by 9

Assessment of a Modular Solar-Powered Cooling System Integrated with a DC-Remote Monitoring and Control System for Fruits and Vegetables Storage

Adebayo Adebiyi, Musiliu Sunmonu, Michael Odewole · Malaysian Journal of Science and Advanced Technology · 2025

A Review on the Performance of Passive and Active Direct Evaporative Cooling System for Preservation of Perishable Agriculture Produce

Hamdan Sulaiman, Siti Mariam Shamsi, Mohd Khairy Zahari · 2023 IEEE International Conference on Agrosystem Engineering, Technology & Applications (AGRETA) · 2023

Aplicação de revestimentos comestíveis contendo óleos essenciais em laranja ‘Pêra’ (Citrus sinensis L. Osbeck)

Vinicius Nelson Barboza de Souza, Nathaly Calister Moretto, Igor Gabriel Silva Oliveira · Food Science Today · 2024

Effects of Zero Energy Evaporative Cooling Pads on the White Sapote (Casimiroa edulis L.) Fruit Quality and Storage Life

Hawi Tolera, Solomon Abera, Getachew Neme Tolesa · Journal of Food Processing and Preservation · 2023

Health benefits derived from fruits and vegetables stored using evaporative coolers

Charles Oluwaseun Adetunji, Nyejirime Young Wike, Frank Abimbola Ogundolie · Evaporative Coolers for the Postharvest Management of Fruits and Vegetables · 2023

Investigation of weight loss of napa cabbage depending on the type of packaging and head weight

Ludmila Pusik, Vlаdimir Pusik, Veronika Bondarenko · Scientific Horizons · 2023

Showing 7 of 9 known citations — external sources report more than can currently be individually listed.

Article metrics

Real usage data collected on this platform.

0

Page views

0

PDF downloads

0

Outbound clicks

9

Citations

Views by country

Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".

No views recorded yet.

Traffic sources

Referring site, by host.

No traffic recorded yet.

Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.