Effect of pH on chromaticity and colour stability of Curcumin and PLA-curcumin coating
Understanding the limitations and unfavorable conditions of curcumin would be an advantage to increase the stability of the pigment. Therefore, the ultimate objective of this research is to evaluate the effects of pH on chromaticity and stability of curcumin and PLA-curcumin extracted from Curcuma l...
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my.iium.irep.952242022-01-13T09:40:49Z http://irep.iium.edu.my/95224/ Effect of pH on chromaticity and colour stability of Curcumin and PLA-curcumin coating Mohd Latiff, Nur Hanie Abu Bakar, Ainaa Eliah Othman, Rashidi Mohd Hatta, Farah Ayuni Ramya, Razanah Wan Sulaiman, Wan Syibrah Hanisah S Agriculture (General) TP248.13 Biotechnology TP372.6 Halal food industry TP934 Paints, pigments, varnishes, etc Understanding the limitations and unfavorable conditions of curcumin would be an advantage to increase the stability of the pigment. Therefore, the ultimate objective of this research is to evaluate the effects of pH on chromaticity and stability of curcumin and PLA-curcumin extracted from Curcuma longa (turmeric), as a potential natural source for coating. Curcumin is the major component in Curcuma longa that is responsible for its biological actions. The bright yellow extract from the turmeric comes from fat-soluble, polyphenolic pigments which is known as curcuminoids. Overall, the dark condition was preferable and stable for the curcumin brightness and slower the degradation percentage. Dark condition exhibited a better and stable colour degradation (approximately 40%) in all curcumin concentrations (1 mg/ml, 2 mg/ml and 3 mg/ml) as compared to light condition with 89.92%, 85.79% and 60.90%, respectively. PLA alone showed the highest chroma (C*) value at 3.08% in dark condition, which was slightly higher than in light condition (2.87%). The highest C* values were achieved in curcumin set with lower pH (pH 3, 5 and 7) and the lowest at higher pH (pH 9 and 11) in both light and dark conditions. However, all PLA-curcumin showed colour stability in both acidic (pH 3 and 5) and basic (pH 9 and 11) in dark condition only. 2021-12-21 Conference or Workshop Item PeerReviewed application/pdf en http://irep.iium.edu.my/95224/1/PAPER%20D183.pdf Mohd Latiff, Nur Hanie and Abu Bakar, Ainaa Eliah and Othman, Rashidi and Mohd Hatta, Farah Ayuni and Ramya, Razanah and Wan Sulaiman, Wan Syibrah Hanisah (2021) Effect of pH on chromaticity and colour stability of Curcumin and PLA-curcumin coating. In: International Conference On Industry-Academia Initiatives In Biotechnology And Chemistry, 20th - 21st December 2021, Pekan, Pahang. (Unpublished) |
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S Agriculture (General) TP248.13 Biotechnology TP372.6 Halal food industry TP934 Paints, pigments, varnishes, etc Mohd Latiff, Nur Hanie Abu Bakar, Ainaa Eliah Othman, Rashidi Mohd Hatta, Farah Ayuni Ramya, Razanah Wan Sulaiman, Wan Syibrah Hanisah Effect of pH on chromaticity and colour stability of Curcumin and PLA-curcumin coating |
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Understanding the limitations and unfavorable conditions of curcumin would be an advantage to increase the stability of the pigment. Therefore, the ultimate objective of this research is to evaluate the effects of pH on chromaticity and stability of curcumin and PLA-curcumin extracted from Curcuma longa (turmeric), as a potential natural source for coating. Curcumin is the major component in Curcuma longa that is responsible for its biological actions. The bright yellow extract from the turmeric comes from fat-soluble, polyphenolic pigments which is known as curcuminoids. Overall, the dark condition was preferable and stable for the curcumin brightness and slower the degradation percentage. Dark condition exhibited a better and stable colour degradation (approximately 40%) in all curcumin concentrations (1 mg/ml, 2 mg/ml and 3 mg/ml) as compared to light condition with 89.92%, 85.79% and 60.90%, respectively. PLA alone showed the highest chroma (C*) value at 3.08% in dark condition, which was slightly higher than in light condition (2.87%). The highest C* values were achieved in curcumin set with lower pH (pH 3, 5 and 7) and the lowest at higher pH (pH 9 and 11) in both light and dark conditions. However, all PLA-curcumin showed colour stability in both acidic (pH 3 and 5) and basic (pH 9 and 11) in dark condition only. |
format |
Conference or Workshop Item |
author |
Mohd Latiff, Nur Hanie Abu Bakar, Ainaa Eliah Othman, Rashidi Mohd Hatta, Farah Ayuni Ramya, Razanah Wan Sulaiman, Wan Syibrah Hanisah |
author_facet |
Mohd Latiff, Nur Hanie Abu Bakar, Ainaa Eliah Othman, Rashidi Mohd Hatta, Farah Ayuni Ramya, Razanah Wan Sulaiman, Wan Syibrah Hanisah |
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Mohd Latiff, Nur Hanie |
title |
Effect of pH on chromaticity and colour stability of Curcumin and PLA-curcumin coating |
title_short |
Effect of pH on chromaticity and colour stability of Curcumin and PLA-curcumin coating |
title_full |
Effect of pH on chromaticity and colour stability of Curcumin and PLA-curcumin coating |
title_fullStr |
Effect of pH on chromaticity and colour stability of Curcumin and PLA-curcumin coating |
title_full_unstemmed |
Effect of pH on chromaticity and colour stability of Curcumin and PLA-curcumin coating |
title_sort |
effect of ph on chromaticity and colour stability of curcumin and pla-curcumin coating |
publishDate |
2021 |
url |
http://irep.iium.edu.my/95224/1/PAPER%20D183.pdf http://irep.iium.edu.my/95224/ |
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1724072795991703552 |
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13.214268 |