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Plasticity elasticity and adhesion energy of plant cell walls: nanometrology of lignin loss using atomic force microscopy

机译:植物细胞壁的可塑性弹性和粘附能:使用原子力显微镜观察木质素损失的纳米计量学

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摘要

The complex organic polymer, lignin, abundant in plants, prevents the efficient extraction of sugars from the cell walls that is required for large scale biofuel production. Because lignin removal is crucial in overcoming this challenge, the question of how the nanoscale properties of the plant cell ultrastructure correlate with delignification processes is important. Here, we report how distinct molecular domains can be identified and how physical quantities of adhesion energy, elasticity, and plasticity undergo changes, and whether such quantitative observations can be used to characterize delignification. By chemically processing biomass, and employing nanometrology, the various stages of lignin removal are shown to be distinguished through the observed morphochemical and nanomechanical variations. Such spatially resolved correlations between chemistry and nanomechanics during deconstruction not only provide a better understanding of the cell wall architecture but also is vital for devising optimum chemical treatments.
机译:植物中富含的复杂有机聚合物木质素阻止了大规模生物燃料生产所需的从细胞壁中高效提取糖。由于木质素的去除对于克服这一挑战至关重要,因此植物细胞超微结构的纳米级特性与脱木质素过程如何相关的问题非常重要。在这里,我们报告了如何识别不同的分子域,以及粘附能,弹性和可塑性的物理量如何发生变化,以及这种定量观察结果是否可用于表征脱木素作用。通过化学处理生物质,并采用纳米计量学,通过观察到的形态化学和纳米力学变化,可以区分木质素去除的各个阶段。解构过程中化学和纳米力学之间的这种空间分辨的相关性不仅提供了对细胞壁结构的更好理解,而且对于设计最佳的化学处理方法也至关重要。

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