| Literature DB >> 29190593 |
Chen Huang1, Arthur J Ragauskas2, Xinxing Wu3, Yang Huang3, Xuelian Zhou3, Juan He3, Caoxing Huang3, Chenhuan Lai3, Xin Li3, Qiang Yong4.
Abstract
A novel bio-refinery sequence yielding varieties of co-products was developed using straw pulping solid residue. This process utilizes neutral sulfite pretreatment which under optimal conditions (160 °C and 3% (w/v) sulfite charge) provides 64.3% delignification while retaining 90% of cellulose and 67.3% of xylan. The pretreated solids exhibited excellent enzymatic digestibility, with saccharification yields of 86.9% and 81.1% for cellulose and xylan, respectively. After pretreatment, the process of semi-simultaneous saccharification and fermentation (S-SSF) and bio-catalysis was investigated. The results revealed that decreased ethanol yields were achieved when solid loading increased from 5% to 30%. An acceptable ethanol yield of 76.8% was obtained at 20% solid loading. After fermentation, bio-catalysis of xylose remaining in fermentation broth resulted in near 100% xylonic acid (XA) yield at varied solid loadings. To complete the co-product portfolio, oxidation ammoniation of the dissolved lignin successfully transformed it into biodegradable slow-release nitrogen fertilizer with excellent agricultural properties.Entities:
Keywords: Bio-ethanol; Neutral sulfite pretreatment; Slow-release nitrogen fertilizer; Straw pulping solid residue; Xylonic acid
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Year: 2017 PMID: 29190593 DOI: 10.1016/j.biortech.2017.11.060
Source DB: PubMed Journal: Bioresour Technol ISSN: 0960-8524 Impact factor: 9.642