A glimpse into the extraction methods of active compounds from plants

Naturally active compounds are usually contained inside plants and materials thereof. Thus, the extraction of the active compounds from plants needs appropriate extraction methods. The commonly employed extraction methods are mostly based on solid–liquid extraction. Frequently used conventional extr...

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Main Authors: Chuo, S. C., Nasir, H. M., Mohd. Setapar, S. H., Mohamed, S. F., Ahmad, A., Wani, W. A., Muddassir, M., Alarifi, A.
Format: Article
Published: Taylor and Francis Ltd. 2020
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Online Access:http://eprints.utm.my/id/eprint/36307/
http://www.dx.doi.org/10.1080/10408347.2020.1820851
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spelling my.utm.363072022-02-28T13:12:16Z http://eprints.utm.my/id/eprint/36307/ A glimpse into the extraction methods of active compounds from plants Chuo, S. C. Nasir, H. M. Mohd. Setapar, S. H. Mohamed, S. F. Ahmad, A. Wani, W. A. Muddassir, M. Alarifi, A. TP Chemical technology Naturally active compounds are usually contained inside plants and materials thereof. Thus, the extraction of the active compounds from plants needs appropriate extraction methods. The commonly employed extraction methods are mostly based on solid–liquid extraction. Frequently used conventional extraction methods such as maceration, heat-assisted extraction, Soxhlet extraction, and hydrodistillation are often criticized for large solvent consumption and long extraction times. Therefore, many advanced extraction methods incorporating various technologies such as ultrasound, microwaves, high pressure, high voltage, enzyme hydrolysis, innovative solvent systems, adsorption, and mechanical forces have been studied. These advanced extraction methods are often better than conventional methods in terms of higher yields, higher selectivity, lower solvent consumption, shorter processing time, better energy efficiency, and potential to avoid organic solvents. They are usually designed to be greener, more sustainable, and environment friendly. In this review, we have critically described recently developed extraction methods pertaining to obtaining active compounds from plants and materials thereof. Main factors that affect the extraction performances are tuned, and extraction methods are chosen in line with the properties of targeted active compounds or the objectives of extraction. The review also highlights the advancements in extraction procedures by using combinations of extraction methods to obtain high overall yields or high purity extracts. Taylor and Francis Ltd. 2020 Article PeerReviewed Chuo, S. C. and Nasir, H. M. and Mohd. Setapar, S. H. and Mohamed, S. F. and Ahmad, A. and Wani, W. A. and Muddassir, M. and Alarifi, A. (2020) A glimpse into the extraction methods of active compounds from plants. Critical Reviews in Analytical Chemistry . ISSN 1040-8347 http://www.dx.doi.org/10.1080/10408347.2020.1820851 DOI: 10.1080/10408347.2020.1820851
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TP Chemical technology
spellingShingle TP Chemical technology
Chuo, S. C.
Nasir, H. M.
Mohd. Setapar, S. H.
Mohamed, S. F.
Ahmad, A.
Wani, W. A.
Muddassir, M.
Alarifi, A.
A glimpse into the extraction methods of active compounds from plants
description Naturally active compounds are usually contained inside plants and materials thereof. Thus, the extraction of the active compounds from plants needs appropriate extraction methods. The commonly employed extraction methods are mostly based on solid–liquid extraction. Frequently used conventional extraction methods such as maceration, heat-assisted extraction, Soxhlet extraction, and hydrodistillation are often criticized for large solvent consumption and long extraction times. Therefore, many advanced extraction methods incorporating various technologies such as ultrasound, microwaves, high pressure, high voltage, enzyme hydrolysis, innovative solvent systems, adsorption, and mechanical forces have been studied. These advanced extraction methods are often better than conventional methods in terms of higher yields, higher selectivity, lower solvent consumption, shorter processing time, better energy efficiency, and potential to avoid organic solvents. They are usually designed to be greener, more sustainable, and environment friendly. In this review, we have critically described recently developed extraction methods pertaining to obtaining active compounds from plants and materials thereof. Main factors that affect the extraction performances are tuned, and extraction methods are chosen in line with the properties of targeted active compounds or the objectives of extraction. The review also highlights the advancements in extraction procedures by using combinations of extraction methods to obtain high overall yields or high purity extracts.
format Article
author Chuo, S. C.
Nasir, H. M.
Mohd. Setapar, S. H.
Mohamed, S. F.
Ahmad, A.
Wani, W. A.
Muddassir, M.
Alarifi, A.
author_facet Chuo, S. C.
Nasir, H. M.
Mohd. Setapar, S. H.
Mohamed, S. F.
Ahmad, A.
Wani, W. A.
Muddassir, M.
Alarifi, A.
author_sort Chuo, S. C.
title A glimpse into the extraction methods of active compounds from plants
title_short A glimpse into the extraction methods of active compounds from plants
title_full A glimpse into the extraction methods of active compounds from plants
title_fullStr A glimpse into the extraction methods of active compounds from plants
title_full_unstemmed A glimpse into the extraction methods of active compounds from plants
title_sort glimpse into the extraction methods of active compounds from plants
publisher Taylor and Francis Ltd.
publishDate 2020
url http://eprints.utm.my/id/eprint/36307/
http://www.dx.doi.org/10.1080/10408347.2020.1820851
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