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http://umt-ir.umt.edu.my:8080/handle/123456789/10483
Title: | Effect of mixed loading of pineapple and mango during storage at ambient temperature |
Authors: | Azlina Anuar |
Keywords: | Azlina Anuar LP 2 FASM 2 2009 |
Issue Date: | 2009 |
Publisher: | Universiti Malaysia Terengganu |
Abstract: | Studies on the storage of pineapple with mango were conducted. Pineapple is non climacteric but sensitive to presence of ethylene which can induce it's ripening. Common assumption when pineapple are mixed load with ethylene producer, i.e. mango it will cause adverse effect on pineapple. The aim of this study is to see the effects of ethylene produced by mango on pineapple during storage at ambient temperature. In this study, 1.4 kg of pineapple are packed together with mango in 1.4:0, 1.4: 1.0, 1.4:2.0, and 1.4:4.0 ratio by weight. Evaluation of ripening of pineapple based on total soluble solids, ascorbic acid, total titratable acidity and pH were conducted every 2 days for up to ten days. For total soluble solids and pH, treatment 1 that is storing pineapple and mango with ratio 1.4: 1.0 appears to give minimal effect on ripening of pineapple whereas treatment 2, ratio 1.4:2.0 and 3, ratio 1.4:4.0 are about the same. This is due to 2 kg of mango is sufficient to produce the concentration of ethylene to its saturation point. For ascorbic acid and total titratable acidity, treatment 1 also appears to give minimal effect on ripening of pineapple. Meanwhile, treatment 2 and 3 give higher impact on ripening of pineapple. In conclusion, the best ratio by weight if mixed load is unavoidable is 1.4 kg of pineapple to 1 kg of mango for ten days of storage where the ripening effect of pineapple based on the parameter that has been determined is minimal. |
URI: | http://umt-ir.umt.edu.my:8080/xmlui/handle/123456789/10483 |
Appears in Collections: | Fakulti Agroteknologi dan Sains Makanan |
Files in This Item:
File | Description | Size | Format | |
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bpd LP 2 FASM 2 2009 Abstract.pdf | 514.79 kB | Adobe PDF | View/Open | |
bpd LP 2 FASM 2 2009 Full text.pdf Restricted Access | 2.07 MB | Adobe PDF | View/Open Request a copy |
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