Abstract
Purpose This study aims to determine the influence of bruise damage generated from the impact test on the physical, chemical and nutritional responses of tomato fruit.Design/methodology/approach The impact loading was applied from different heights. The impact energies for 20, 40 and 60 cm drop heights were 129.59, 259.18 and 388.77 mJ, respectively. The injured samples were kept for 48 hours at low (10 °C) and ambient (22 °C) storage temperatures. Weight loss, firmness, color, total soluble solids (TSS), lycopene and carotenoids were measured before the impact test (day 0) and after 48 hours of the impact and storage.Findings The drop height of 60 cm and storage at 22 °C showed the highest values in the bruised area. The impact from the 60 cm drop height significantly reduced weight, lightness, yellowness, hue, firmness, lycopene and carotenoids, particularly at 22 °C storage condition. Redness (a*) and color index (CI) showed a remarkable increase (p < 0.05) at 22 °C on tomatoes affected from the highest impact level (388.77 mJ) after 48 hours of storage. No pronounced significance was seen between TSS and drop heights. This study has confirmed that tomato bruising for a short-term storage period induces physiological changes at different storage temperature conditions.Originality/value The study can confirm the crucial role of inappropriate handling in increasing fresh produce loss within short-term storage. Also, this research can be considered as a guideline for transporters, handlers, processors, distributors and horticulture researchers in the fresh produce supply chain during postharvest operations.
Subject
Water Science and Technology,Agronomy and Crop Science,Ecology, Evolution, Behavior and Systematics,General Biochemistry, Genetics and Molecular Biology,General Business, Management and Accounting,General Computer Science,General Medicine,General Environmental Science,Education
Reference31 articles.
1. Bruise susceptibilities of kiwifruit as affected by impact and fruit properties;Research in Agricultural Engineering,2012
2. Kinetic modeling of quality changes of tomato during storage;Agricultural Engineering International: CIGR Journal,2021
3. Effect of storage conditions on postharvest quality of tomatoes: A case study at market-level;Journal of Agricultural and Marine Sciences,2021
4. Impact of vibration on the quality of tomato produced by stimulated transport,2021
5. The contribution of impact damage to the quality changes of stored banana fruits;Biology and Life Sciences Forum,2022