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  4. Development of a novel ultrasound- assisted alkali pretreatment strategy for the production of bioethanol and xylanases from chili post harvest residue
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research article

Development of a novel ultrasound- assisted alkali pretreatment strategy for the production of bioethanol and xylanases from chili post harvest residue

Sindhu, Raveendran
•
Binod, Parameswaran
•
Mathew, Anil Kuruvilla
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2017
Bioresource Technology

A novel ultrasound-assisted alkali pretreatment strategy was developed which could effectively remove lignin and hemicelluloses and improve the sugar yield from chili post harvest residue. Operational parameters that affect the pretreatment efficiency were studied and optimized. Inhibitor analysis of the hydrolyzate revealed that major fermentation inhibitors like furfural, 5-hydroxymethyl furfural as well as organic acids like citric acid, succinic acid and propionic acid were absent. Hence fermentation can be carried out without detoxification of the hydrolyzate. Changes in structural properties of the biomass were studied in relation to the pretreatment process using Scanning Electron Microscopy (SEM) and the changes in chemical composition were also monitored. The biomass pretreated with the optimized novel method could yield 0.428 g/g of reducing sugars upon enzymatic hydrolysis. The hydrolyzate obtained by this novel pretreatment strategy was found to be suitable for bioethanol and xylanase production. (C) 2017 Elsevier Ltd. All rights reserved.

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Type
research article
DOI
10.1016/j.biortech.2017.03.001
Web of Science ID

WOS:000405980700021

Author(s)
Sindhu, Raveendran
Binod, Parameswaran
Mathew, Anil Kuruvilla
Abraham, Amith
Gnansounou, Edgard  
Ummalyma, Sabeela Beevi
Thomas, Leya
Pandey, Ashok
Date Issued

2017

Publisher

Elsevier

Published in
Bioresource Technology
Volume

242

Start page

146

End page

151

Subjects

Chili

•

Bioethanol

•

Pretreatment

•

Saccharification

•

Xylanases

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
GR-GN  
Available on Infoscience
September 5, 2017
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/140038
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