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Breakdown of hierarchical architecture in cellulose during dilute acid pretreatments

机译:稀酸预处理过程中纤维素中层次结构的分解

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Cellulose is an attractive candidate as a feedstock for sustainable bioenergy because of its global abundance. Pretreatment of biomass has significant influence on the chemical availability of cellulose locked in recalcitrant microfibrils. Optimizing pretreatment depends on an understanding of its impact on the microscale and nanoscale molecular architecture. X-ray scattering experiments have been performed on native and pre-treated maize stover and models of cellulose architecture have been derived from these data. Ultra small-angle, very small-angle and small-angle X-ray scattering (USAXS, VSAXS and SAXS) probe three different levels of architectural scale. USAXS and SAXS have been used to study cellulose at two distinct length scales, modeling the fibrils as similar to 30 angstrom diameter rods packed into similar to 0.14 mu m diameter bundles. VSAXS is sensitive to structural features at length scales between these two extremes. Detailed analysis of diffraction patterns from untreated and pretreated maize using cylindrical Guinier plots and the derivatives of these plots reveals the presence of substructures within the similar to 0.14 mu m diameter bundles that correspond to grouping of cellulose approximately 30 nm in diameter. These sub-structures are resilient to dilute acid pretreatments but are sensitive to pretreatment when iron sulfate is added. These results provide evidence of the hierarchical arrangement of cellulose at three length scales and the evolution of these arrangements during pretreatments.
机译:纤维素因其全球丰富性而作为可持续生物能源的原料成为有吸引力的候选者。生物质的预处理对锁定在顽固性微纤维中的纤维素的化学利用率具有重大影响。优化预处理取决于对纳米级和纳米级分子结构的影响的了解。已经在天然和预处理的玉米秸秆上进行了X射线散射实验,并且从这些数据得出了纤维素结构模型。超小角度,超小角度和小角度X射线散射(USAXS,VSAXS和SAXS)探测三个不同级别的建筑规模。 USAXS和SAXS已被用于研究两种不同长度尺度的纤维素,将原纤维建模为类似于30埃直径的棒,并包装成类似0.14微米直径的束。 VSAXS对这两个极端之间的长度尺度的结构特征很敏感。使用圆柱形的Guinier图及其衍生图对未经处理和预处理的玉米的衍射图进行了详细分析,揭示出在类似于0.14μm直径束的子结构中存在亚结构,这对应于直径约30 nm的纤维素的分组。这些亚结构对稀酸预处理具有弹性,但在添加硫酸铁时对预处理敏感。这些结果提供了纤维素在三个长度尺度上的分层排列以及预处理期间这些排列的演变的证据。

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