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首页> 外文期刊>Journal of the Chilean Chemical Society >STRUCTURAL CHARACTERISTICS AND DISTRIBUTION OF LIGNIN IN EUCALYPTUS GLOBULUS PULPS OBTAINED BY A COMBINED AUTOHYDROLSIS/ALKALINE EXTRACTION PROCESS FOR ENZYMATIC SACCHARIFICATION OF CELLULOSE
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STRUCTURAL CHARACTERISTICS AND DISTRIBUTION OF LIGNIN IN EUCALYPTUS GLOBULUS PULPS OBTAINED BY A COMBINED AUTOHYDROLSIS/ALKALINE EXTRACTION PROCESS FOR ENZYMATIC SACCHARIFICATION OF CELLULOSE

机译:自体水解/碱法联合提取纤维素的糖化球藻中木质素的结构特征和分布

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Eucalyptus globulus wood chips were subjected to autohydrolysis pretreatment at 175°C at three different residence times. Part of the recovered solids were submitted to alkaline extraction with NaOH solution to remove leachable lignin. The chemical composition of the fibrous material was analyzed by HPLC, Py-GCMS and 2D-NMR HSQC, while morphological changes were evaluated by SEM and LSCM. The pretreated materials were hydrolyzed with cellulases at a substrate loading of 10% (w/v) for up to 72 h. Glucose yields (based on dry wood) obtained in the enzymatic hydrolysis ranged between 38% and 65%, depending on reaction time in the autohydrolysis pretreatment. After the alkaline extraction, no significant change was observed in the yields in the enzymatic hydrolysis at 72 h, but at the lower severities, the initial rates of saccharification increased. The main effect of the hydrothermal pretreatment was removal of hemicelluloses, resulting in enriched cellulose pulps. SEM and LSCM images of the hydrothermal pretreated samples showed a disruption of the fiber surface, mainly in those samples obtained at the higher severity. Py-GC/MS and HSQC analysis showed that no major changes in the lignin structure occurred in the samples obtained by autohydrolysis and further alkaline extraction. By autohydrolysis at the higher severity (So=4.02), the lateral chains in lignin were cleaved and the formation of lignin droplets was observed. Hemicelluloses removal and lignin redeposition as droplets in certain regions of the fiber surface was associated with the higher accessibility of cellulose and the yield increase of the enzymatic hydrolysis.
机译:在三种不同的停留时间下,将球果桉木片在175°C下进行自动水解预处理。将部分回收的固体用NaOH溶液进行碱萃取,以去除可浸出的木质素。通过HPLC,Py-GCMS和2D-NMR HSQC分析纤维材料的化学组成,同时通过SEM和LSCM评估形态变化。预处理的材料用纤维素酶在10%(w / v)的底物负载下水解长达72小时。酶促水解中获得的葡萄糖产率(基于干木)在38%至65%之间,具体取决于自动水解预处理中的反应时间。碱提取后,在72小时的酶解中收率没有明显变化,但是在较低的烈度下,糖化的初始速率增加了。水热预处理的主要作用是去除半纤维素,从而得到丰富的纤维素纸浆。经水热预处理的样品的SEM和LSCM图像显示出纤维表面的破坏,主要是在以更高强度获得的样品中。 Py-GC / MS和HSQC分析表明,通过自动水解和进一步的碱萃取获得的样品中木质素结构没有发生重大变化。通过以更高的严重程度(So = 4.02)进行自水解,木质素中的侧链被裂解,并观察到木质素液滴的形成。半纤维素的去除和木质素在纤维表面某些区域中的小滴的重新沉积与纤维素的较高可及性和酶水解的产率增加有关。

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