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Tensional stress generation in gelatinous fibres: a review and possible mechanism based on cell-wall structure and composition

机译:凝胶状纤维中产生张应力:基于细胞壁结构和组成的综述及可能的机理

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摘要

Gelatinous fibres are specialized fibres, distinguished by the presence of an inner, gelatinous cell-wall layer. In recent years, they have attracted increasing interest since their walls have a desirable chemical composition (low lignin, low pentosan, and high cellulose contents) for applications such as saccharification and biofuel production, and they have interesting mechanical properties, being capable of generating high tensional stress. However, the unique character of gelatinous layer has not yet been widely recognized. The first part of this review presents a model of gelatinous-fibre organization and stresses the unique character of the gelatinous layer as a separate type of cell-wall layer, different from either primary or secondary wall layers. The second part discusses major current models of tensional stress generation by these fibres and presents a novel unifying model based on recent advances in knowledge of gelatinous wall structure. Understanding this mechanism could potentially lead to novel biomimetic developments in material sciences.
机译:胶状纤维是专用纤维,其特征在于存在内胶状细胞壁层。近年来,由于其壁具有用于糖化和生物燃料生产等应用的理想化学组成(低木质素,低戊聚糖和高纤维素含量),它们吸引了越来越多的兴趣,并且它们具有令人感兴趣的机械性能,能够产生高拉应力。然而,胶状层的独特特性尚未得到广泛认可。这篇综述的第一部分提出了一种胶状纤维组织模型,并强调了胶状层作为细胞壁层的一种独立类型的独特特性,与主要或次要壁层不同。第二部分讨论了当前由这些纤维产生张应力的主要模型,并基于胶状壁结构知识的最新进展提出了一种新颖的统一模型。了解这种机制可能会导致材料科学中新型仿生学的发展。

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