Optimized supercritical CO2 extraction conditions on yield and quality of torch ginger (Etlingera elatior (Jack) R.M. Smith) inflorescence essential oil

Natural preservatives derived from plant sources have been actively studied as an alternative to synthetic materials. Various extraction methods had been done to utilize the torch ginger plant for food, nutraceutical and pharmaceutical applications. Supercritical carbon dioxide (SC−CO2) extraction i...

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Main Authors: Marzlan, Anis Asyila, Muhialdin, Belal J., Zainal Abedin, Nur Hanani, Mohammed, Nameer Khairullah, Taleb Abadl, Muna Mahmood, Mohd Roby, Bizura Hasida, Meor Hussin, Anis Shobirin
Format: Article
Language:English
Published: Elsevier 2020
Online Access:http://psasir.upm.edu.my/id/eprint/87022/
http://psasir.upm.edu.my/id/eprint/87022/1/Optimized%20supercritical%20CO2%20extraction%20conditions.pdf
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author Marzlan, Anis Asyila
Muhialdin, Belal J.
Zainal Abedin, Nur Hanani
Mohammed, Nameer Khairullah
Taleb Abadl, Muna Mahmood
Mohd Roby, Bizura Hasida
Meor Hussin, Anis Shobirin
author_facet Marzlan, Anis Asyila
Muhialdin, Belal J.
Zainal Abedin, Nur Hanani
Mohammed, Nameer Khairullah
Taleb Abadl, Muna Mahmood
Mohd Roby, Bizura Hasida
Meor Hussin, Anis Shobirin
author_sort Marzlan, Anis Asyila
building UPM Institutional Repository
collection Online Access
description Natural preservatives derived from plant sources have been actively studied as an alternative to synthetic materials. Various extraction methods had been done to utilize the torch ginger plant for food, nutraceutical and pharmaceutical applications. Supercritical carbon dioxide (SC−CO2) extraction is a sustainable green technology to extract high-purity oil with high aromatic compound content. This study aims to optimize the SC−CO2 extraction conditions on high yield and strong antioxidant activity of torch ginger (Etlingera elatior) inflorescence essential oil (TGIEO). Response surface methodology in combination with central composite design was employed and two independent variables, pressure (83.6–366.4 bar) and temperature (34.7–57.3 °C) were analysed to optimize the response variables. Pressure was observed as the most significant parameter affecting the yield and antioxidant activity. The optimized SC−CO2 extraction conditions were pressure 286.4 bar and temperature 57.3 °C. The experimental values of response variables at these SC−CO2 extraction conditions match well with the predicted values which confirm the model validity. The TGIEO showed high diphenyl-2-picryl-hydrazyl and 2,2′-azino-bis (3-ethylbenzothiazoline-6-sulfonic acid) diammonium salt radical scavenging activity. Antimicrobial activity screening for TGIEO was done via disc diffusion assay and showed inhibition zone (11.5 ± 0.71 to 22.0 ± 2.83 mm) against six pathogenic bacteria (Bacillus subtilis, Staphylococcus aureus, Listeria monocytogenes, Salmonella typhi, Vibrio species and Escherichia coli). Listeria monocytogenes was observed as the most sensitive microorganism with minimal inhibitory concentration (0.16 mg/mL) and minimal bactericidal concentration (0.63 mg/mL) respectively. Compounds 1-dodecanol and lauryl acetate were identified as major constituent in TGIEO.
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institution Universiti Putra Malaysia
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publisher Elsevier
recordtype eprints
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spelling upm-870222022-01-10T08:57:23Z http://psasir.upm.edu.my/id/eprint/87022/ Optimized supercritical CO2 extraction conditions on yield and quality of torch ginger (Etlingera elatior (Jack) R.M. Smith) inflorescence essential oil Marzlan, Anis Asyila Muhialdin, Belal J. Zainal Abedin, Nur Hanani Mohammed, Nameer Khairullah Taleb Abadl, Muna Mahmood Mohd Roby, Bizura Hasida Meor Hussin, Anis Shobirin Natural preservatives derived from plant sources have been actively studied as an alternative to synthetic materials. Various extraction methods had been done to utilize the torch ginger plant for food, nutraceutical and pharmaceutical applications. Supercritical carbon dioxide (SC−CO2) extraction is a sustainable green technology to extract high-purity oil with high aromatic compound content. This study aims to optimize the SC−CO2 extraction conditions on high yield and strong antioxidant activity of torch ginger (Etlingera elatior) inflorescence essential oil (TGIEO). Response surface methodology in combination with central composite design was employed and two independent variables, pressure (83.6–366.4 bar) and temperature (34.7–57.3 °C) were analysed to optimize the response variables. Pressure was observed as the most significant parameter affecting the yield and antioxidant activity. The optimized SC−CO2 extraction conditions were pressure 286.4 bar and temperature 57.3 °C. The experimental values of response variables at these SC−CO2 extraction conditions match well with the predicted values which confirm the model validity. The TGIEO showed high diphenyl-2-picryl-hydrazyl and 2,2′-azino-bis (3-ethylbenzothiazoline-6-sulfonic acid) diammonium salt radical scavenging activity. Antimicrobial activity screening for TGIEO was done via disc diffusion assay and showed inhibition zone (11.5 ± 0.71 to 22.0 ± 2.83 mm) against six pathogenic bacteria (Bacillus subtilis, Staphylococcus aureus, Listeria monocytogenes, Salmonella typhi, Vibrio species and Escherichia coli). Listeria monocytogenes was observed as the most sensitive microorganism with minimal inhibitory concentration (0.16 mg/mL) and minimal bactericidal concentration (0.63 mg/mL) respectively. Compounds 1-dodecanol and lauryl acetate were identified as major constituent in TGIEO. Elsevier 2020-10-15 Article PeerReviewed text en http://psasir.upm.edu.my/id/eprint/87022/1/Optimized%20supercritical%20CO2%20extraction%20conditions.pdf Marzlan, Anis Asyila and Muhialdin, Belal J. and Zainal Abedin, Nur Hanani and Mohammed, Nameer Khairullah and Taleb Abadl, Muna Mahmood and Mohd Roby, Bizura Hasida and Meor Hussin, Anis Shobirin (2020) Optimized supercritical CO2 extraction conditions on yield and quality of torch ginger (Etlingera elatior (Jack) R.M. Smith) inflorescence essential oil. Industrial Crops and Products, 154. art. no. 112581. pp. 1-6. ISSN 0926-6690; ESSN: 1872-633X https://www.sciencedirect.com/science/article/abs/pii/S0926669020304970 10.1016/j.indcrop.2020.112581
spellingShingle Marzlan, Anis Asyila
Muhialdin, Belal J.
Zainal Abedin, Nur Hanani
Mohammed, Nameer Khairullah
Taleb Abadl, Muna Mahmood
Mohd Roby, Bizura Hasida
Meor Hussin, Anis Shobirin
Optimized supercritical CO2 extraction conditions on yield and quality of torch ginger (Etlingera elatior (Jack) R.M. Smith) inflorescence essential oil
title Optimized supercritical CO2 extraction conditions on yield and quality of torch ginger (Etlingera elatior (Jack) R.M. Smith) inflorescence essential oil
title_full Optimized supercritical CO2 extraction conditions on yield and quality of torch ginger (Etlingera elatior (Jack) R.M. Smith) inflorescence essential oil
title_fullStr Optimized supercritical CO2 extraction conditions on yield and quality of torch ginger (Etlingera elatior (Jack) R.M. Smith) inflorescence essential oil
title_full_unstemmed Optimized supercritical CO2 extraction conditions on yield and quality of torch ginger (Etlingera elatior (Jack) R.M. Smith) inflorescence essential oil
title_short Optimized supercritical CO2 extraction conditions on yield and quality of torch ginger (Etlingera elatior (Jack) R.M. Smith) inflorescence essential oil
title_sort optimized supercritical co2 extraction conditions on yield and quality of torch ginger (etlingera elatior (jack) r.m. smith) inflorescence essential oil
url http://psasir.upm.edu.my/id/eprint/87022/
http://psasir.upm.edu.my/id/eprint/87022/
http://psasir.upm.edu.my/id/eprint/87022/
http://psasir.upm.edu.my/id/eprint/87022/1/Optimized%20supercritical%20CO2%20extraction%20conditions.pdf