UV-C effect on microbial disinfection of pineapple-mango juice blend using Dean-vortex technology
This study intended to evaluate the effect of ultraviolet irradiation (UV-C) treatment of Dean-vortex technology on pineapple-mango juice blend microbial safety. Non-thermal alternative treatment of UV-C known to be promising in juice processing but low penetration depth in...
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Format: | Article |
Language: | English |
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Wiley
2019
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Online Access: | http://psasir.upm.edu.my/id/eprint/82700/1/UV-C%20effect%20on%20microbial%20disinfection%20of%20pineapple-mango%20juice%20blend%20using%20Dean-vortex%20technology.pdf |
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author | Kamarul Zaman, Amanina Amani Shamsudin, Rosnah Mohd Adzahan, Noranizan Sulaiman, Alifdalino |
author_facet | Kamarul Zaman, Amanina Amani Shamsudin, Rosnah Mohd Adzahan, Noranizan Sulaiman, Alifdalino |
author_sort | Kamarul Zaman, Amanina Amani |
collection | UPM |
description | This study intended to evaluate the effect of ultraviolet irradiation (UV-C) treatment of Dean-vortex technology on pineapple-mango juice blend microbial safety. Non-thermal
alternative treatment of UV-C known to be promising in juice processing but low penetration depth in opaque liquid resulted in enhancement of treatment using dean vortex.
Dean vortex promotes mixing in helically arranged treatment tube. Two pump frequency was selected (40 and 45Hz) to be performed on pineapple-mango juice blend at blending
ratio of 70%pineapple and 30% mango. The flow regimes inside the polyfluoroalcoxy (PFA) tube behave as turbulence as the effect of dean vortex for both flow rates of the pump which brought the targeted microorganism closer towards light source relatively improve treatment efficiency. Pathogenic E. coli O157: H7 that can cause fatality was inoculated into pineapple-mango juice blends. This study shows that at a UV-C dosage of 8.38mJ/cm² able to reduce E. coli O157: H7 more than 5 log reduction. Although UV-C treatment unable to fully disinfect yeast and mould counts in pineapple-mango juice blend, the detection colony was still under the permissible limit (1.26 log CFU/mL). These proved that UV-C treatment with the implementation of dean-vortex technology able to meet the microbial load safety limit comparable to commercialize practice using thermal pasteurization. |
first_indexed | 2024-03-06T10:32:18Z |
format | Article |
id | upm.eprints-82700 |
institution | Universiti Putra Malaysia |
language | English |
last_indexed | 2024-03-06T10:32:18Z |
publishDate | 2019 |
publisher | Wiley |
record_format | dspace |
spelling | upm.eprints-827002020-09-11T05:11:23Z http://psasir.upm.edu.my/id/eprint/82700/ UV-C effect on microbial disinfection of pineapple-mango juice blend using Dean-vortex technology Kamarul Zaman, Amanina Amani Shamsudin, Rosnah Mohd Adzahan, Noranizan Sulaiman, Alifdalino This study intended to evaluate the effect of ultraviolet irradiation (UV-C) treatment of Dean-vortex technology on pineapple-mango juice blend microbial safety. Non-thermal alternative treatment of UV-C known to be promising in juice processing but low penetration depth in opaque liquid resulted in enhancement of treatment using dean vortex. Dean vortex promotes mixing in helically arranged treatment tube. Two pump frequency was selected (40 and 45Hz) to be performed on pineapple-mango juice blend at blending ratio of 70%pineapple and 30% mango. The flow regimes inside the polyfluoroalcoxy (PFA) tube behave as turbulence as the effect of dean vortex for both flow rates of the pump which brought the targeted microorganism closer towards light source relatively improve treatment efficiency. Pathogenic E. coli O157: H7 that can cause fatality was inoculated into pineapple-mango juice blends. This study shows that at a UV-C dosage of 8.38mJ/cm² able to reduce E. coli O157: H7 more than 5 log reduction. Although UV-C treatment unable to fully disinfect yeast and mould counts in pineapple-mango juice blend, the detection colony was still under the permissible limit (1.26 log CFU/mL). These proved that UV-C treatment with the implementation of dean-vortex technology able to meet the microbial load safety limit comparable to commercialize practice using thermal pasteurization. Wiley 2019-08 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/82700/1/UV-C%20effect%20on%20microbial%20disinfection%20of%20pineapple-mango%20juice%20blend%20using%20Dean-vortex%20technology.pdf Kamarul Zaman, Amanina Amani and Shamsudin, Rosnah and Mohd Adzahan, Noranizan and Sulaiman, Alifdalino (2019) UV-C effect on microbial disinfection of pineapple-mango juice blend using Dean-vortex technology. Journal of Food Science, 3 (4). pp. 285-294. ISSN 0022-1147; ESSN: 1750-3841 https://www.researchgate.net/publication/330999399_UV-C_effect_on_microbial_disinfection_of_pineapple-mango_juice_blend_using_Dean-vortex_technology 10.26656/fr.2017.3(4).113 |
spellingShingle | Kamarul Zaman, Amanina Amani Shamsudin, Rosnah Mohd Adzahan, Noranizan Sulaiman, Alifdalino UV-C effect on microbial disinfection of pineapple-mango juice blend using Dean-vortex technology |
title | UV-C effect on microbial disinfection of pineapple-mango juice blend using Dean-vortex technology |
title_full | UV-C effect on microbial disinfection of pineapple-mango juice blend using Dean-vortex technology |
title_fullStr | UV-C effect on microbial disinfection of pineapple-mango juice blend using Dean-vortex technology |
title_full_unstemmed | UV-C effect on microbial disinfection of pineapple-mango juice blend using Dean-vortex technology |
title_short | UV-C effect on microbial disinfection of pineapple-mango juice blend using Dean-vortex technology |
title_sort | uv c effect on microbial disinfection of pineapple mango juice blend using dean vortex technology |
url | http://psasir.upm.edu.my/id/eprint/82700/1/UV-C%20effect%20on%20microbial%20disinfection%20of%20pineapple-mango%20juice%20blend%20using%20Dean-vortex%20technology.pdf |
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