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Investigation of tension wood formation and 26-dichlorbenzonitrile application in short rotation coppice willow composition and enzymatic saccharification

机译:短旋毛小杨柳组成和酶促糖化过程中张力木形成和26-二氯苄腈的应用研究

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摘要

BackgroundShort rotation coppice willow is a potential lignocellulosic feedstock in the United Kingdom and elsewhere; however, research on optimising willow specifically for bioethanol production has started developing only recently. We have used the feedstock Salix viminalis × Salix schwerinii cultivar 'Olof' in a three-month pot experiment with the aim of modifying cell wall composition and structure within the stem to the benefit of bioethanol production. Trees were treated for 26 or 43 days with tension wood induction and/or with an application of the cellulose synthesis inhibitor 2,6-dichlorobenzonitrile that is specific to secondary cell walls. Reaction wood (tension and opposite wood) was isolated from material that had received the 43-day tension wood induction treatment.
机译:背景矮矮生矮柳在英国和其他地方是一种潜在的木质纤维素原料。但是,关于柳叶的优化专门用于生物乙醇生产的研究直到最近才开始发展。我们在一个为期三个月的盆栽实验中使用了原料沙柳(Salix viminalis)×沙柳(Salix schwerinii)品种'Olof',目的是改变茎中的细胞壁组成和结构,以利于生物乙醇的生产。用张力木材诱导和/或使用对二次细胞壁特异的纤维素合成抑制剂2,6-二氯苄腈处理树木26或43天。从接受43天张力木材诱导处理的材料中分离出反应木材(张力木材和对立木材)。

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