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The impact of ionic liquid pretreatment on the chemistry and enzymatic digestibility of Pinus radiata compression wood

机译:离子液体预处理对辐射松压缩木材化学和酶消化率的影响

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Compression wood represents a unique challenge for biochemical processing of softwoods to biofuels and chemicals on account of its high lignin and galactan, and low glucan contents. Here we report the impact of ionic liquid pretreatment on the chemistry and enzymatic digestibility of Pinus radiata compression wood and opposite wood. Samples were pretreated using l-ethyl-3-methylimidazolium acetate at 120 ℃ and 155 ℃ for 3 h. Hemicelluloses were preferentially extracted during the pretreatment and the recovered biomass was enriched in cellulose and lignin. The pretreatment caused structural modifications to the lignin and polysaccharides that included loss of ether linkages and formation of condensed structures in the lignin, reduced cellulose crystallinity and possible depolymerisation of polysaccharide chains. The enzymatic digestibility of the cellulose was significantly enhanced in both wood types after pretreatment. Approximately 90% of the glucan was converted to glucose after enzyme treatment for 24 h following pretreatment at 120 ℃ compared to only 3-8% in untreated samples. Because the ionic liquid pretreatment was equally effective on both compression wood and opposite wood the outcome of the saccharification was largely determined by the original chemical composition of the two wood types.
机译:压缩木材由于其高木质素和半乳聚糖以及低葡聚糖含量,对软木的生化处理而言,是向生物燃料和化学物质转化的独特挑战。在这里,我们报告了离子液体预处理对辐射松压缩木材和相反木材的化学和酶消化率的影响。样品用乙酸1-乙基-3-甲基咪唑鎓在120℃和155℃下预处理3 h​​。在预处理过程中优先提取半纤维素,回收的生物质富含纤维素和木质素。预处理引起木质素和多糖的结构修饰,包括醚键的丧失和木质素中缩合结构的形成,纤维素结晶度降低以及多糖链可能解聚。预处理后,两种木材中纤维素的酶消化率均显着提高。在120℃的预处理下,经过24h的酶处理后,约90%的葡聚糖转化为葡萄糖,而未经处理的样品中只有3-8%。由于离子液体预处理对压缩木材和对立木材均有效,因此糖化的结果很大程度上取决于两种木材的原始化学组成。

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