Lactic acid production from unmatured banana peel and flesh through simultaneous saccharification and fermentation
The aim of this study was to establish a process of lactic acid (LA) production from two different kinds of african organic waste i.e. peel and flesh of un-matured banana by using as model strain Lactobacillus bp Pentosus AH 239. The bioconversion of glucose contained in the biomass to LA was perfor...
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Institut Agronomique et Vétérinaire Hassan II
2016-07-01
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Series: | Revue Marocaine des Sciences Agronomiques et Vétérinaires |
Online Access: | http://agrimaroc.org/index.php/Actes_IAVH2/article/view/435/376 |
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doaj-7be9608dbaf246f082dd83e5cc2a57902020-11-25T03:53:46ZengInstitut Agronomique et Vétérinaire Hassan IIRevue Marocaine des Sciences Agronomiques et Vétérinaires2028-991X2028-991X2016-07-01427885Lactic acid production from unmatured banana peel and flesh through simultaneous saccharification and fermentationMohammed BELMAKKI0El Houssine BARTALI1Anders Cai Holm HANSEN2IAV Hassan II, MoroccoIAV Hassan II, MoroccoTechnical University of DenmarkThe aim of this study was to establish a process of lactic acid (LA) production from two different kinds of african organic waste i.e. peel and flesh of un-matured banana by using as model strain Lactobacillus bp Pentosus AH 239. The bioconversion of glucose contained in the biomass to LA was performed following the Simultaneous Saccharification and Fermentation (SSF) process. The Separated Hydrolysis and Fermentation (SHF) was also applied in this study to compare the efficiency of both process. The results showed that the enzymatic hydrolysis yield was significantly improved in case of SSF recording a rate of hydrolysis in the range of 82%-90% against 52%-61% under SHF conditions. The results showed also that SSF give more efficient lactic acid production with a yield above of 90%, and a high concentration up to 50 g/L. Due to its performance, the SSF process for the lactic acid production could be an important way of bioconversion for lignocellulosic residues in Africa. The optimization of this process need to be adapted for African context and for its development on an industrial scale.http://agrimaroc.org/index.php/Actes_IAVH2/article/view/435/376 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Mohammed BELMAKKI El Houssine BARTALI Anders Cai Holm HANSEN |
spellingShingle |
Mohammed BELMAKKI El Houssine BARTALI Anders Cai Holm HANSEN Lactic acid production from unmatured banana peel and flesh through simultaneous saccharification and fermentation Revue Marocaine des Sciences Agronomiques et Vétérinaires |
author_facet |
Mohammed BELMAKKI El Houssine BARTALI Anders Cai Holm HANSEN |
author_sort |
Mohammed BELMAKKI |
title |
Lactic acid production from unmatured banana peel and flesh through simultaneous saccharification and fermentation |
title_short |
Lactic acid production from unmatured banana peel and flesh through simultaneous saccharification and fermentation |
title_full |
Lactic acid production from unmatured banana peel and flesh through simultaneous saccharification and fermentation |
title_fullStr |
Lactic acid production from unmatured banana peel and flesh through simultaneous saccharification and fermentation |
title_full_unstemmed |
Lactic acid production from unmatured banana peel and flesh through simultaneous saccharification and fermentation |
title_sort |
lactic acid production from unmatured banana peel and flesh through simultaneous saccharification and fermentation |
publisher |
Institut Agronomique et Vétérinaire Hassan II |
series |
Revue Marocaine des Sciences Agronomiques et Vétérinaires |
issn |
2028-991X 2028-991X |
publishDate |
2016-07-01 |
description |
The aim of this study was to establish a process of lactic acid (LA) production from two different kinds of african organic waste i.e. peel and flesh of un-matured banana by using as model strain Lactobacillus bp Pentosus AH 239. The bioconversion of glucose contained in the biomass to LA was performed following the Simultaneous Saccharification and Fermentation (SSF) process. The Separated Hydrolysis and Fermentation (SHF) was also applied in this study to compare the efficiency of both process. The results showed that the enzymatic hydrolysis yield was significantly improved in case of SSF recording a rate of hydrolysis in the range of 82%-90% against 52%-61% under SHF conditions. The results showed also that SSF give more efficient lactic acid production with a yield above of 90%, and a high concentration up to 50 g/L. Due to its performance, the SSF process for the lactic acid production could be an important way of bioconversion for lignocellulosic residues in Africa. The optimization of this process need to be adapted for African context and for its development on an industrial scale. |
url |
http://agrimaroc.org/index.php/Actes_IAVH2/article/view/435/376 |
work_keys_str_mv |
AT mohammedbelmakki lacticacidproductionfromunmaturedbananapeelandfleshthroughsimultaneoussaccharificationandfermentation AT elhoussinebartali lacticacidproductionfromunmaturedbananapeelandfleshthroughsimultaneoussaccharificationandfermentation AT anderscaiholmhansen lacticacidproductionfromunmaturedbananapeelandfleshthroughsimultaneoussaccharificationandfermentation |
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