Extraction and Separation of Carbohydrates and Phenolic Compounds in Flax Shives with pH-Controlled Pressurized Low Polarity Water

被引:23
作者
Kim, Jin-Woo [1 ]
Mazza, G. [1 ]
机构
[1] Agr & Agri Food Canada, Pacific Agrifood Res Ctr, Summerland, BC V0H 1Z0, Canada
关键词
Cellulose; central composite design; extraction; flax shives; hemicellulose; lignin; lignocellulosic material; Linum usitatissimum; optimization; phenolics; pressurized low polarity water; LIQUID HOT-WATER; ACID PRETREATMENT; CORN STOVER; ETHANOL; CONVERSION; STRAW; FERMENTATION; OPTIMIZATION; PRODUCTS; FEATURES;
D O I
10.1021/jf803467y
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
A bench-scale pressurized low polarity water (PLPW) extractor was used for the extraction and separation of hemicellulose, cellulose, lignin, and other phenolic compounds in flax shives. In the first part of this research, the key PLPW extraction process variables of temperature, pH, and flow rate, were optimized using central composite design (CCD). Temperature and pH of water had a significant affect on the fractionation of carbohydrates (cellulose and hemicellulose), lignin, and other phenolics. The optimal extraction conditions for the separation of hemicellulose and lignin, determined by the optimization using CCD, were 170 degrees C, pH 3.0, and a flow rate of 2.5 mL/min. Under these extraction conditions, 39.3% of the initial biomass or feed, 70.1% of the hemicellulose, 35.3% of the lignin, and 5.3% of the cellulose were extracted from the flax shives. In order to improve the purity and yield of the cellulose, a two-stage PLPW extraction was examined. The first stage was designed to remove hemicellulose by water at 170 degrees C and the second stage was intended for delignification by a pH 12 buffer at 220 degrees C. The two-stage PLPW extraction effectively removed 63.2% of the feed, 97.3% of hemicellulose, and 86.3% of lignin, while solubilizing 23.9% of cellulose; resulting in a solid residue containing 0.7 g of hemicellulose, 3.5 g of lignin, and 27.3 g of cellulose/100 g of DFS. The PLPW extraction is able to extract and separate components in flax shives by changing pH and temperature. The best case occurs between pH 9.5 and 12, resulting in maximum solubilization of hemicellulose and lignin.
引用
收藏
页码:1805 / 1813
页数:9
相关论文
共 43 条
[1]   Pretreatment of wheat straw and conversion of xylose and xylan to ethanol by thermophilic anaerobic bacteria [J].
Ahring, BK ;
Jensen, K ;
Nielsen, P ;
Bjerre, AB ;
Schmidt, AS .
BIORESOURCE TECHNOLOGY, 1996, 58 (02) :107-113
[2]   Production of cellulase systems by selected mutants of Trichoderma reesei in solid-state fermentation and their hydrolytic potentials [J].
Awafo, VA ;
Chahal, DS ;
Simpson, BK ;
Le, GBB .
APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY, 1996, 57-8 :461-470
[3]  
Berthouex P.M., 1994, STAT ENV ENG, P129
[4]   Lignins and lignocellulosics: a better control of synthesis for new and improved uses [J].
Boudet, AM ;
Kajita, S ;
Grima-Pettenati, J ;
Goffner, D .
TRENDS IN PLANT SCIENCE, 2003, 8 (12) :576-581
[5]   Pressurized low polarity water extraction of lignans from whole flaxseed [J].
Cacace, J. E. ;
Mazza, G. .
JOURNAL OF FOOD ENGINEERING, 2006, 77 (04) :1087-1095
[6]   New process of maize stalk amination treatment by steam explosion [J].
Chen, HZ ;
Liu, UY ;
Yang, XX ;
Li, ZH .
BIOMASS & BIOENERGY, 2005, 28 (04) :411-417
[7]  
CLARKE AJ, 1997, BIODEGRADATION CELLU, P5
[8]   Pretreatment of Miscanthus for hydrogen production by Thermotoga elfii [J].
de Vrije, T ;
de Haas, GG ;
Tan, GB ;
Keijsers, ERP ;
Claassen, PAM .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2002, 27 (11-12) :1381-1390
[9]   Effects of lignocellulose degradation products on ethanol fermentations of glucose and xylose by Saccharomyces cerevisiae, Zymomonas mobilis, Pichia stipitis, and Candida shehatae [J].
Delgenes, JP ;
Moletta, R ;
Navarro, JM .
ENZYME AND MICROBIAL TECHNOLOGY, 1996, 19 (03) :220-225
[10]   Enzymatic saccharification of hot-water pretreated corn fiber for production of monosaccharides [J].
Dien, B. S. ;
Li, X. -L. ;
Iten, L. B. ;
Jordan, D. B. ;
O'Bryan, P. J. ;
Cotta, M. A. .
ENZYME AND MICROBIAL TECHNOLOGY, 2006, 39 (05) :1137-1144