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On-farm Pretreatment Technologies for Improving Enzymatic Degradability of Cellulose and Hemicellulose Present in Perennial Grass

机译:农场预处理技术,用于改善纤维素和半纤维素存在的酶促降血

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This research investigated the ability of on-farmpretreatments with acid, alkali, ozone or novel enzymes to improve enzymatic degradability of cellulose and hemicelluloses in biomass at the bioreflneiy. Two perennial grasses, switchgrass (Panicum virgatumj and reed canarygrass fPhalaris arundinacea L.), -were direct-cut harvested, pretreated, and stored anaerobically for 30 d. Pretreated and untreated samples were fermented to ethanol by Saccharomyces cerevisiae in the presence of commercial cellulasefor 72 hr to ethanol. Xylose yields were also measured following fermentation because it is not metabolized by S. cerevisiae. Suljuric acid and lime pretreatment technologies look promising considering the high conversion yields and ease of application.Efficiencies of nearly 80% for cellulose conversion to ethanol and hemicellulose to xylose were realized, albeit at high chemical loadings. Ozonolysis results demonstrated similar success, but integration of this technology into current storage systemswill be challenging. Enzyme addition (xylanases or feruloyl esterase) at ensiling only marginally improved conversion efficiency.
机译:本研究研究了对酸,碱,臭氧或新酶的侵入酸,碱,臭氧或新酶的能力,以改善生物量在生物量的纤维素和半纤维素的酶促可降解性。两个多年生草,Switchgrass(Panicum Virgatumj和Reed Canarygrass fphalaris arundinacea L.), - 直接收获,预处理,并厌氧存放30天。在商业纤维素酶72hR至乙醇存在下,通过酿酒酵母发酵到乙醇中对乙醇进行预处理和未处理的样品。在发酵后也测量木糖产率,因为它没有由酿酒酵母代谢。考虑到高转化产量和易于应用的硫酸和石灰预处理技术看起来很有希望。实现纤维素转化对乙醇和半纤维素至木糖的近80%的近80%,尽管高化学载荷。臭氧溶解结果表明了类似的成功,但这项技术集成到当前的储存系统上有挑战性。酶添加(木聚糖酶或二磺酰酸酯)在酶中仅略微改善转化效率。

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