Extraction of bioactive compounds from Garcinia Mangostana pericarp using supercritical carbon dioxide with hydrothermal process

Supercritical carbon dioxide with hydrothermal extraction is efficient method of extracting valuable compounds from natural products. In this study, supercritical carbon dioxide with hydrothermal process was used to extract bioactive compounds from Garcinia mangostana pericarp. The study employs oth...

Full description

Saved in:
Bibliographic Details
Main Author: Chhouk, Kimthet
Format: text
Language:English
Published: Animo Repository 2013
Online Access:https://animorepository.dlsu.edu.ph/etd_masteral/4582
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: De La Salle University
Language: English
id oai:animorepository.dlsu.edu.ph:etd_masteral-11420
record_format eprints
spelling oai:animorepository.dlsu.edu.ph:etd_masteral-114202021-01-26T06:35:42Z Extraction of bioactive compounds from Garcinia Mangostana pericarp using supercritical carbon dioxide with hydrothermal process Chhouk, Kimthet Supercritical carbon dioxide with hydrothermal extraction is efficient method of extracting valuable compounds from natural products. In this study, supercritical carbon dioxide with hydrothermal process was used to extract bioactive compounds from Garcinia mangostana pericarp. The study employs other extraction methods such as SC-CO2 with hydrothermal extraction, SC-CO2 extraction and SC-CO2 with 5% (w/w) of water as co-solvent. The extraction yield and the recovery of alpha-mangostin were then compared relative to the results obtained from SC-CO2 with Hydrothermal Extraction. The extraction was performed in an 8.8 ml stainless steel close-type batch reactor. The effects of process parameters such as temperature (120-160oC), pressure (5-15 MPa), extraction time (30-120 min), and particle size (0.2735-0.9385 mm) on the extraction yield, total phenolic compounds content, antioxidant activity, and alphamangostin recovery were investigated. The relationship of process parameters were established using Response Surface Methodology (RSM). The predicted optimum extraction yield was 39.931% w/w based on dry Garcinia mangostana pericarp, obtained at temperature of 160oC, with operating pressure of 5 MPa, having an extraction time of 30 minutes, and with the pericarp average particle size of 0.2735 mm. It was also predicted from RSM that the total phenolic compounds could achieved a highest value at 22.03 g GAE/100g of extract when temperature was at 120oC, under an extraction pressure of 15 MPa, in an extraction time of 30 min and having average particle size of charged at 0.9385 mm. Likewise, a highest antioxidant activity characterized by the lowest of IC 50 of 73.176 g/ml could be obtained if the temperature of extraction is 160oC, coupled with an operating pressure of 15 MPa, an extraction time of 30 minutes and average particle size of 0.9385 mm. The maximum predicted value in terms of alpha-mangostin recovery reached 0.203% w/w of extract when conditions are at 140oC, 10 MPa, extraction time of 60 minutes, and average particle size of 0.2735 mm. It could be observed that SCCO2 Extraction with Hydrothermal Process exhibited the highest extraction yield but obtained the lowest value of alpha-mangostin recovered when compared to other methods of extraction consider in this study. 2013-01-01T08:00:00Z text https://animorepository.dlsu.edu.ph/etd_masteral/4582 Master's Theses English Animo Repository
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
language English
description Supercritical carbon dioxide with hydrothermal extraction is efficient method of extracting valuable compounds from natural products. In this study, supercritical carbon dioxide with hydrothermal process was used to extract bioactive compounds from Garcinia mangostana pericarp. The study employs other extraction methods such as SC-CO2 with hydrothermal extraction, SC-CO2 extraction and SC-CO2 with 5% (w/w) of water as co-solvent. The extraction yield and the recovery of alpha-mangostin were then compared relative to the results obtained from SC-CO2 with Hydrothermal Extraction. The extraction was performed in an 8.8 ml stainless steel close-type batch reactor. The effects of process parameters such as temperature (120-160oC), pressure (5-15 MPa), extraction time (30-120 min), and particle size (0.2735-0.9385 mm) on the extraction yield, total phenolic compounds content, antioxidant activity, and alphamangostin recovery were investigated. The relationship of process parameters were established using Response Surface Methodology (RSM). The predicted optimum extraction yield was 39.931% w/w based on dry Garcinia mangostana pericarp, obtained at temperature of 160oC, with operating pressure of 5 MPa, having an extraction time of 30 minutes, and with the pericarp average particle size of 0.2735 mm. It was also predicted from RSM that the total phenolic compounds could achieved a highest value at 22.03 g GAE/100g of extract when temperature was at 120oC, under an extraction pressure of 15 MPa, in an extraction time of 30 min and having average particle size of charged at 0.9385 mm. Likewise, a highest antioxidant activity characterized by the lowest of IC 50 of 73.176 g/ml could be obtained if the temperature of extraction is 160oC, coupled with an operating pressure of 15 MPa, an extraction time of 30 minutes and average particle size of 0.9385 mm. The maximum predicted value in terms of alpha-mangostin recovery reached 0.203% w/w of extract when conditions are at 140oC, 10 MPa, extraction time of 60 minutes, and average particle size of 0.2735 mm. It could be observed that SCCO2 Extraction with Hydrothermal Process exhibited the highest extraction yield but obtained the lowest value of alpha-mangostin recovered when compared to other methods of extraction consider in this study.
format text
author Chhouk, Kimthet
spellingShingle Chhouk, Kimthet
Extraction of bioactive compounds from Garcinia Mangostana pericarp using supercritical carbon dioxide with hydrothermal process
author_facet Chhouk, Kimthet
author_sort Chhouk, Kimthet
title Extraction of bioactive compounds from Garcinia Mangostana pericarp using supercritical carbon dioxide with hydrothermal process
title_short Extraction of bioactive compounds from Garcinia Mangostana pericarp using supercritical carbon dioxide with hydrothermal process
title_full Extraction of bioactive compounds from Garcinia Mangostana pericarp using supercritical carbon dioxide with hydrothermal process
title_fullStr Extraction of bioactive compounds from Garcinia Mangostana pericarp using supercritical carbon dioxide with hydrothermal process
title_full_unstemmed Extraction of bioactive compounds from Garcinia Mangostana pericarp using supercritical carbon dioxide with hydrothermal process
title_sort extraction of bioactive compounds from garcinia mangostana pericarp using supercritical carbon dioxide with hydrothermal process
publisher Animo Repository
publishDate 2013
url https://animorepository.dlsu.edu.ph/etd_masteral/4582
_version_ 1772836009080258560