首页> 外文期刊>Holzforschung >Influence of hot-water extraction on ultrastructure and distribution of glucomannans and xylans in poplar xylem as detected by gold immunolabeling
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Influence of hot-water extraction on ultrastructure and distribution of glucomannans and xylans in poplar xylem as detected by gold immunolabeling

机译:金免疫标记法检测热水提取对杨木质部葡甘露聚糖和木聚糖超微结构和分布的影响

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摘要

Pre-extraction of hemicelluloses from lignocellulosic feedstock has been a research focus during the last decade within the context of lignocellulosic-biorefineries. In this study, the effect of hot-water extraction (HWE) on the topochemistry and ultrastructure of poplar wood (Populus sp.) was investigated based on scanning electron microscopy (SEM) and transmission electron microscopy (TEM) paired with immunogold labeling of the hemicelluloses. The cell walls of HWE wood (HWEW) differ significantly in their ultrastructure from neat wood, i.e., there are many distorted cells and agglomerations of lignin and extractives agglomerations in the cell lumina. Results of immunogold labeling indicate that different types of hemicelluloses are extracted at different stages and both their concentration and distribution within the wood cell wall layers are affected by the HWE. Hemicelluloses more closely associated with lignin appear to be more easily removed by HWE. Lignins are also extracted partially and altered. Results provide a holistic view of chemical and ultrastructural changes including the associated changes in hemicelluloses and lignin distribution in HWEW. The obtained data could be helpful to understand better the mechanical properties and adhesion related issues of HWEW for wood composite production.
机译:在过去的十年中,从木质纤维素原料中提取半纤维素一直是木质纤维素生物精炼厂的研究重点。在这项研究中,基于扫描电子显微镜(SEM)和透射电子显微镜(TEM)结合免疫金标记,研究了热水提取(HWE)对杨木(Populus sp。)的拓扑化学和超微结构的影响。半纤维素。 HWE木材(HWEW)的细胞壁在超微结构方面与纯木有很大不同,即,细胞内腔中有许多扭曲的细胞和木质素的团聚体以及萃取物的团聚体。免疫金标记的结果表明,在不同阶段提取了不同类型的半纤维素,它们在木材细胞壁层中的浓度和分布都受到HWE的影响。与木质素紧密相关的半纤维素似乎更容易被HWE去除。木质素也被部分提取和改变。结果提供了化学和超微结构变化的整体视图,包括HWEW中半纤维素和木质素分布的相关变化。获得的数据可能有助于更好地了解用于木材复合材料生产的HWEW的机械性能和附着力相关问题。

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