| Literature DB >> 24935002 |
Qing Wang1, Zhanghong Wang1, Fei Shen2, Jinguang Hu3, Fubao Sun4, Lili Lin5, Gang Yang5, Yanzong Zhang5, Shihuai Deng1.
Abstract
In order to seek a high-efficient pretreatment path for converting lignocellulosic feedstocks to fermentable sugars by enzymatic hydrolysis, the concentrated H₃PO₄ plus H₂O₂ (PHP) was attempted to pretreat different lignocellulosic biomass for evaluating the pretreatment flexibility on feedstocks. Meanwhile, the responses of pretreatment to particle sizes were also evaluated. When the PHP-pretreatment was employed (final H₂O₂ and H₃PO₄ concentration of 1.77% and 80.0%), 71-96% lignin and more than 95% hemicellulose in various feedstocks (agricultural residues, hardwood, softwood, bamboo, and their mixture, and garden wastes mixture) can be removed. Consequently, more than 90% glucose conversion was uniformly achieved indicating PHP greatly improved the pretreatment flexibility to different feedstocks. Moreover, when wheat straw and oak chips were PHP-pretreated with different sizes, the average glucose conversion reached 94.9% and 100% with lower coefficient of variation (7.9% and 0.0%), which implied PHP-pretreatment can significantly weaken the negative effects of feedstock sizes on subsequent conversion.Entities:
Keywords: Concentrated phosphoric acid; Enzymatic hydrolysis; Hydrogen peroxide; Pretreatment
Mesh:
Substances:
Year: 2014 PMID: 24935002 DOI: 10.1016/j.biortech.2014.05.088
Source DB: PubMed Journal: Bioresour Technol ISSN: 0960-8524 Impact factor: 9.642