Optimization of process parameters for banana ripening using ethylene gas
Downloads
Published
DOI:
https://doi.org/10.5958/0974-0112.2019.00054.9Keywords:
Musa sp., temperature, relative humidityIssue
Section
License
Copyright (c) 2019 Indian Journal of Horticulture

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.
Abstract
The study on organic ripening of banana (Musa sp. var ‘Robusta’) fruit was carried out to optimize the best suitable combination of ethylene concentration, temperature and relative humidity. Process parameters were optimized using the design-expert version 8.0.6 software (Stat-Ease Inc, Minneapolis, USA) and applying factorial methodology to the experimental data. Quality parameter of well ripen banana were taken as standard for comparing the experimental results. The temperature, relative humidity, ethylene gas concentration and duration of ripening were observed to have profound influence on ripening characteristics of banana fruit. Among all, the combination of 40°C temperature, 80% relative humidity and 90 ppm ethylene concentration was found optimum for producing ripening effect after 72 hours with quality parameters i.e. total soluble solid (17.68%), pH(4.79), L*(60.26) a* (12.35) and b* (37.73) which were very close to values of standard sample. The study concluded that ripening of banana can be performed with the help of ethylene gas in closed chamber within three days.
How to Cite
Downloads
Similar Articles
- Pooja, G.S. Kocher, M.I.S. Gill, N.K. Arora, Evaluation of local guava varieties for quality wine production , Indian Journal of Horticulture: Vol. 71 No. 4 (2014): Indian Journal of Horticulture
- D. Sharma, N. Mehta, Combining ability analysis for protein content in relation to heterosis and green pod yield in vegetable cowpea , Indian Journal of Horticulture: Vol. 71 No. 4 (2014): Indian Journal of Horticulture
- K.J. Jeyabaskaran, R. Pitchaimuthu, S. Uma, Assessing nutrient uptake pattern with respect to dry matter accumulation in Ney Poovan (AB) banana at critical growth stages , Indian Journal of Horticulture: Vol. 75 No. 03 (2018): Indian Journal of Horticulture
- R.K. Patel, C.S. Maiti, Bidyut C. Deka, S.S. Roy, V.K. Verma, Genetic diversity among guava genotypes based on seed protein polymorphism , Indian Journal of Horticulture: Vol. 70 No. 2 (2013): Indian Journal of Horticulture
- Dinesh Kumar, D.B. Singh, Effect of fertigation on growth, yield and quality of almond under Kashmir conditions , Indian Journal of Horticulture: Vol. 75 No. 02 (2018): Indian Journal of Horticulture
- Pooja Saxena, V.K. Singh, S. Rajan, Assessment of water relation traits during different phenological stages in mango (Mangifera indica L.) , Indian Journal of Horticulture: Vol. 74 No. 04 (2017): Indian Journal of Horticulture
- P. Jayaprakash, Sheeba D, Vikas ., V. K., Sivasamy M, T. Sabesan, Development of pollen germination medium to test pollen viability of eggplant and its wild species , Indian Journal of Horticulture: Vol. 75 No. 02 (2018): Indian Journal of Horticulture
- P.L. Saran, Ganga Devi, Ratan Kumar, Relative importance of biotic and physiological factors on mango production under Doon valley conditions of Uttarakhand , Indian Journal of Horticulture: Vol. 70 No. 2 (2013): Indian Journal of Horticulture
- S. Backiyarani, S. Uma, P. Sundararaju, M. Mayilvaganan, M.S. Saraswathi, G. Arunkumar, Time course expression studies during Musa - Pratylenchus coffeae interaction , Indian Journal of Horticulture: Vol. 70 No. 2 (2013): Indian Journal of Horticulture
- Aditi Badiyala, Desh Raj, Seasonal incidence, varietal screening and management of shoot and fruit borer infesting okra in Kangra valley of Himachal Pradesh , Indian Journal of Horticulture: Vol. 70 No. 2 (2013): Indian Journal of Horticulture
<< < 8 9 10 11 12 13 14 15 16 17 > >>
You may also start an advanced similarity search for this article.