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The Potential in Bioethanol Production From Waste Fiber Sludges in Pulp Mill-Based Biorefineries

机译:纸浆厂生物精炼厂废纤维污泥生产生物乙醇的潜力

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Industrial production of bioethanol from fibers that are unusable for pulp production in pulp mills offers an approach to product diversification and more efficient exploitation of the raw material. In an attempt to utilize fibers flowing to the biological waste treatment, selected fiber sludges from three different pulp mills were collected, chemically analyzed, enzymatically hydrolyzed, and fermented for bioethanol production. Another aim was to produce solid residues with higher heat values than those of the original fiber sludges to gain a better fuel for combustion. The glucan content ranged between 32 and 66% of the dry matter. The lignin content varied considerably (1-25%), as did the content of wood extractives (0.2-5.8%). Hydrolysates obtained using enzymatic hydrolysis were found to be readily fermentable using Saccharomyces cerevisiae. Hydrolysis resulted in improved heat values compared with corresponding untreated fiber sludges. Oligomeric xylan fragments in the solid residue obtained after enzymatic hydrolysis were identified using matrix-assisted laser desorption ionization-time of flight and their potential as a new product of a pulp mill-based biorefinery is discussed.
机译:由无法用于制浆厂中的纸浆生产的纤维工业生产生物乙醇,为产品多样化和原料的更有效利用提供了一种途径。为了利用流向生物废物处理的纤维,收集了来自三个不同制浆厂的选定纤维污泥,进行了化学分析,酶解和发酵,以生产生物乙醇。另一个目的是生产比原始纤维污泥具有更高热值的固体残留物,以获得更好的燃烧燃料。葡聚糖含量为干物质的32%至66%。木质素含量变化很大(1-25%),木材提取物含量也变化很大(0.2-5.8%)。发现使用酿酒酵母容易地发酵使用酶促水解获得的水解产物。与相应的未经处理的纤维污泥相比,水解可提高热值。使用基质辅助激光解吸电离飞行时间鉴定了酶解后获得的固体残留物中的寡聚木聚糖片段,并讨论了其作为制浆厂生物精炼厂的新产品的潜力。

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