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  4. Integrated xylitol production by fermentation of hardwood wastes
 
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Integrated xylitol production by fermentation of hardwood wastes

Journal
Journal of Chemical Technology and Biotechnology
Journal Volume
83
Journal Issue
4
Start Page
534
End Page
540
ISSN
0268-2575
1097-4660
Date Issued
2008-04
Author(s)
Chun-Han Ko  
Po-Neng Chiang  
Pei-Chun Chiu
Chia-Chen Liu
Chin-Lin Yang
Ing-Luen Shiau
DOI
10.1002/jctb.1828
URI
Integrated xylitol production by fermentation of hardwood wastes
https://scholars.lib.ntu.edu.tw/handle/123456789/724408
Abstract
AbstractBACKGROUND: In an effort to obtain higher‐value‐added derivatives, a process, starting with acid hydrolysis pretreatment of waste wood followed by fermentation and ultrafiltration, for production of xylitol from pulp mill hardwood wastes was developed and is reported here.RESULTS: Sequential removals of furfural, 5‐hydroxymethylfurfural, total phenols and acetic acid were performed with powdered activated carbon and cationic ion exchange columns for the neutralized hydrolysate. Batch fermentations with yeast extract and detoxified and concentrated hydrolysates were conducted using Candida tropicalis (BCRC 20520), Candida boidinii (BCRC 21432), Candida guilliermondii (BCRC 21549), Candida utilis (BCRC 20334) and Pichia anomala (BCRC 21359). Among the yeast strains, C. tropicalis exhibited the highest volumetric rates of product generation (QP, 0.73 g L−1 h−1) and substrate consumption (QS, 1.35 g L−1 h−1) over 44 h. Additional C. tropicalis fermentation runs achieved product yield (YP/S) values of 0.70 and 0.45 g g−1 after 96 h with urea and soybean meal respectively. Between 9.59 and 25.51 g L−1 of ethanol was also produced in these systems. Pretreatment with 2 mg L−1 polydiallyldimethylammonium chloride on the membrane surface increased protein rejection from 85 to 96% for fermentation broth in a 2 h span.CONCLUSION: The present study demonstrates that xylitol, a value‐added derivative, can be effectively obtained from hardwood wastes using low‐cost fermentation media. Copyright © 2008 Society of Chemical Industry
Subjects
Candida tropicalis
Eucalyptus
Low-cost fermentation media
Ultrafiltration
Xylitol
Publisher
Wiley
Type
journal article

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