The influence of extraction parameters on spent coffee grounds as a renewable tannin resource

Spent coffee grounds that are left behind during the coffee brewing process consist of valuable tannin compounds which makes them ideal material as a renewable tannin resource. For this reason, the concept of cleaner production had been applied in practice and a tannin extraction process with spent...

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Main Authors: Low, Jiun Hor, Rahman, Wan Aizan Wan Abdul, Jamaluddin, Jamarosl
Format: Article
Published: Elsevier Ltd 2015
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Online Access:http://eprints.utm.my/id/eprint/58960/
http://dx.doi.org/10.1016/j.jclepro.2015.03.094
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spelling my.utm.589602021-09-02T13:13:59Z http://eprints.utm.my/id/eprint/58960/ The influence of extraction parameters on spent coffee grounds as a renewable tannin resource Low, Jiun Hor Rahman, Wan Aizan Wan Abdul Jamaluddin, Jamarosl TP Chemical technology Spent coffee grounds that are left behind during the coffee brewing process consist of valuable tannin compounds which makes them ideal material as a renewable tannin resource. For this reason, the concept of cleaner production had been applied in practice and a tannin extraction process with spent coffee grounds as raw material was investigated in the present study. Among the extraction key factors, namely sodium hydroxide concentration, extraction temperature, liquid to solid ratio, and extraction time, the former three factors had exerted a considerable effect on spent coffee ground tannin extraction yield and its reactivity. However, extraction time had only marginal effects which could be simply neglected in the tannin extraction process. These observations imply that spent coffee grounds can be reused as a renewable tannin resource by properly selecting the extraction parameters in order to produce the spent coffee ground tannin with desirable extraction yield and reactivity. By taking both the spent coffee ground tannin extraction yield and reactivity into consideration, the optimum extraction conditions are; 5% sodium hydroxide concentration, 100 °C extraction temperature, 30 min extraction time, and 8.23 liquid to solid ratio, so that tannin with a high extraction yield (21.02%) and high reactivity (29.69%) could be recovered. The present study provides an understanding on the impact of the extraction parameters on isolated spent coffee ground tannin as well as to fill up academic deficiencies in spent coffee grounds, which, in turn, could serve as a reliable guideline for the development of a full-scale, sustainable spent coffee ground tannin extraction process in coffee industries. Elsevier Ltd 2015 Article PeerReviewed Low, Jiun Hor and Rahman, Wan Aizan Wan Abdul and Jamaluddin, Jamarosl (2015) The influence of extraction parameters on spent coffee grounds as a renewable tannin resource. Jourl Of Cleaner Production, 101 . pp. 222-228. ISSN 9596-526 http://dx.doi.org/10.1016/j.jclepro.2015.03.094 DOI:10.1016/j.jclepro.2015.03.094
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
Low, Jiun Hor
Rahman, Wan Aizan Wan Abdul
Jamaluddin, Jamarosl
The influence of extraction parameters on spent coffee grounds as a renewable tannin resource
description Spent coffee grounds that are left behind during the coffee brewing process consist of valuable tannin compounds which makes them ideal material as a renewable tannin resource. For this reason, the concept of cleaner production had been applied in practice and a tannin extraction process with spent coffee grounds as raw material was investigated in the present study. Among the extraction key factors, namely sodium hydroxide concentration, extraction temperature, liquid to solid ratio, and extraction time, the former three factors had exerted a considerable effect on spent coffee ground tannin extraction yield and its reactivity. However, extraction time had only marginal effects which could be simply neglected in the tannin extraction process. These observations imply that spent coffee grounds can be reused as a renewable tannin resource by properly selecting the extraction parameters in order to produce the spent coffee ground tannin with desirable extraction yield and reactivity. By taking both the spent coffee ground tannin extraction yield and reactivity into consideration, the optimum extraction conditions are; 5% sodium hydroxide concentration, 100 °C extraction temperature, 30 min extraction time, and 8.23 liquid to solid ratio, so that tannin with a high extraction yield (21.02%) and high reactivity (29.69%) could be recovered. The present study provides an understanding on the impact of the extraction parameters on isolated spent coffee ground tannin as well as to fill up academic deficiencies in spent coffee grounds, which, in turn, could serve as a reliable guideline for the development of a full-scale, sustainable spent coffee ground tannin extraction process in coffee industries.
format Article
author Low, Jiun Hor
Rahman, Wan Aizan Wan Abdul
Jamaluddin, Jamarosl
author_facet Low, Jiun Hor
Rahman, Wan Aizan Wan Abdul
Jamaluddin, Jamarosl
author_sort Low, Jiun Hor
title The influence of extraction parameters on spent coffee grounds as a renewable tannin resource
title_short The influence of extraction parameters on spent coffee grounds as a renewable tannin resource
title_full The influence of extraction parameters on spent coffee grounds as a renewable tannin resource
title_fullStr The influence of extraction parameters on spent coffee grounds as a renewable tannin resource
title_full_unstemmed The influence of extraction parameters on spent coffee grounds as a renewable tannin resource
title_sort influence of extraction parameters on spent coffee grounds as a renewable tannin resource
publisher Elsevier Ltd
publishDate 2015
url http://eprints.utm.my/id/eprint/58960/
http://dx.doi.org/10.1016/j.jclepro.2015.03.094
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score 13.211869