Comparison of Tongkat Ali root chemical composition extracted by soxhlet, conventional steam and microwave assisted extraction techniques

Eurycoma longifolia Jack (Tongkat Ali) roots are used in traditional medicines for its wide range of biological effects. The process of extracting out this essential oil from the plant requires a delicate and efficient method. In this research the extract of the essential oil of Eurycoma longifol...

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Main Authors: Najmuldeen, Ghazi Faisal, Narayanan, Kamalanathan, Kirubananthan, Deeveeya, Faisal, Ghasak Ghazi
Format: Article
Language:English
English
Published: Pharmacognosy Network Worldwide 2018
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Online Access:http://irep.iium.edu.my/65410/7/65410_Comparison%20of%20tongkat%20ali%20root%20chemical_scopus.pdf
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spelling my.iium.irep.654102018-09-04T04:39:16Z http://irep.iium.edu.my/65410/ Comparison of Tongkat Ali root chemical composition extracted by soxhlet, conventional steam and microwave assisted extraction techniques Najmuldeen, Ghazi Faisal Narayanan, Kamalanathan Kirubananthan, Deeveeya Faisal, Ghasak Ghazi RB Pathology Eurycoma longifolia Jack (Tongkat Ali) roots are used in traditional medicines for its wide range of biological effects. The process of extracting out this essential oil from the plant requires a delicate and efficient method. In this research the extract of the essential oil of Eurycoma longifolia’s root using Microwave Assisted Extraction (MAE), Soxhlet Extraction and Conventional Steam Extraction (CSE) methods, is characterized to identify the components of essential oil extracted and then to compare the yield percentage and components of the extracts from both methods. The extract obtained was characterized using gas chromatography mass spectroscopy (GC-MS) by comparing the compositions of components present in commercial Tongkat Ali oil stored in the GC-MS library. The findings showed that the MAE gives a maximum yield percentage of 5 % with six chemical components extracted in 20 min while SE and CSE gives high yield percentage of 28.3% in 3 h and 2.5 % in 6 h respectively with only three chemical components extracted. Therefore, MAE is the optimum method for extracting essential oil from Tongkat Ali with a high quality Pharmacognosy Network Worldwide 2018-08-06 Article PeerReviewed application/pdf en http://irep.iium.edu.my/65410/7/65410_Comparison%20of%20tongkat%20ali%20root%20chemical_scopus.pdf application/pdf en http://irep.iium.edu.my/65410/13/65410_Comparison%20of%20Tongkat%20Ali%20root%20chemical%20composition.pdf Najmuldeen, Ghazi Faisal and Narayanan, Kamalanathan and Kirubananthan, Deeveeya and Faisal, Ghasak Ghazi (2018) Comparison of Tongkat Ali root chemical composition extracted by soxhlet, conventional steam and microwave assisted extraction techniques. Pharmacognosy Journal, 10 (5). pp. 916-920. ISSN 0975-3575 http://www.phcogj.com/sites/default/files/PharmacognJ-10-5-916_0.pdf 10.5530/pj.2018.5.154
institution Universiti Islam Antarabangsa Malaysia
building IIUM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider International Islamic University Malaysia
content_source IIUM Repository (IREP)
url_provider http://irep.iium.edu.my/
language English
English
topic RB Pathology
spellingShingle RB Pathology
Najmuldeen, Ghazi Faisal
Narayanan, Kamalanathan
Kirubananthan, Deeveeya
Faisal, Ghasak Ghazi
Comparison of Tongkat Ali root chemical composition extracted by soxhlet, conventional steam and microwave assisted extraction techniques
description Eurycoma longifolia Jack (Tongkat Ali) roots are used in traditional medicines for its wide range of biological effects. The process of extracting out this essential oil from the plant requires a delicate and efficient method. In this research the extract of the essential oil of Eurycoma longifolia’s root using Microwave Assisted Extraction (MAE), Soxhlet Extraction and Conventional Steam Extraction (CSE) methods, is characterized to identify the components of essential oil extracted and then to compare the yield percentage and components of the extracts from both methods. The extract obtained was characterized using gas chromatography mass spectroscopy (GC-MS) by comparing the compositions of components present in commercial Tongkat Ali oil stored in the GC-MS library. The findings showed that the MAE gives a maximum yield percentage of 5 % with six chemical components extracted in 20 min while SE and CSE gives high yield percentage of 28.3% in 3 h and 2.5 % in 6 h respectively with only three chemical components extracted. Therefore, MAE is the optimum method for extracting essential oil from Tongkat Ali with a high quality
format Article
author Najmuldeen, Ghazi Faisal
Narayanan, Kamalanathan
Kirubananthan, Deeveeya
Faisal, Ghasak Ghazi
author_facet Najmuldeen, Ghazi Faisal
Narayanan, Kamalanathan
Kirubananthan, Deeveeya
Faisal, Ghasak Ghazi
author_sort Najmuldeen, Ghazi Faisal
title Comparison of Tongkat Ali root chemical composition extracted by soxhlet, conventional steam and microwave assisted extraction techniques
title_short Comparison of Tongkat Ali root chemical composition extracted by soxhlet, conventional steam and microwave assisted extraction techniques
title_full Comparison of Tongkat Ali root chemical composition extracted by soxhlet, conventional steam and microwave assisted extraction techniques
title_fullStr Comparison of Tongkat Ali root chemical composition extracted by soxhlet, conventional steam and microwave assisted extraction techniques
title_full_unstemmed Comparison of Tongkat Ali root chemical composition extracted by soxhlet, conventional steam and microwave assisted extraction techniques
title_sort comparison of tongkat ali root chemical composition extracted by soxhlet, conventional steam and microwave assisted extraction techniques
publisher Pharmacognosy Network Worldwide
publishDate 2018
url http://irep.iium.edu.my/65410/7/65410_Comparison%20of%20tongkat%20ali%20root%20chemical_scopus.pdf
http://irep.iium.edu.my/65410/13/65410_Comparison%20of%20Tongkat%20Ali%20root%20chemical%20composition.pdf
http://irep.iium.edu.my/65410/
http://www.phcogj.com/sites/default/files/PharmacognJ-10-5-916_0.pdf
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score 13.18916