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Advances in understanding the surface chemistry of lignocellulosic biomass via time-of-flight secondary ion mass spectrometry

机译:通过飞行时间二次离子质谱法了解木质纤维素生物质的表面化学的进展

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Abstract Overcoming the natural recalcitrance of lignocellulosic biomass is necessary in order to efficiently convert biomass into biofuels or biomaterials and many times this requires some type of chemical pretreatment and/or biological treatment. While bulk chemical analysis is the traditional method of determining the impact a treatment has on biomass, the chemistry on the surface of the sample can differ from the bulk chemistry. Specifically, enzymes and microorganisms bind to the surface of the biomass and their efficiency could be greatly impacted by the chemistry of the surface. Therefore, it is important to study and understand the chemistry of the biomass at the surface. Time-of-flight secondary ion mass spectrometry (ToF-SIMS) is a powerful tool that can spectrally and spatially analyze the surface chemistry of a sample. This review discusses the advances in understanding lignocellulosic biomass surface chemistry using the ToF-SIMS by addressing the instrument parameters, biomass sample preparation, and characteristic lignocellulosic ion fragmentation peaks along with their typical location in the plant cell wall. The use of the ToF-SIMS in detecting chemical changes due to chemical pretreatments, microbial treatments, and physical or genetic modifications is discussed along with possible future applications of the instrument in lignocellulosic biomass studies.
机译:摘要为了有效地将生物质转化为生物燃料或生物材料,必须克服木质纤维素生物质的自然抗拒性,而且很多时候这需要某种化学预处理和/或生物处理。虽然散装化学分析是确定处理方法对生物质产生影响的传统方法,但样品表面的化学作用可能不同于散装化学作用。具体而言,酶和微生物结合到生物质的表面,其效率可能会受到表面化学性质的极大影响。因此,重要的是研究和理解表面生物质的化学性质。飞行时间二次离子质谱仪(ToF-SIMS)是一种功能强大的工具,可以对样品的表面化学进行光谱和空间分析。这篇综述通过解决仪器参数,生物质样品制备和特征性木质纤维素离子碎片峰及其在植物细胞壁中的典型位置,讨论了使用ToF-SIMS理解木质纤维素生物质表面化学的进展。讨论了使用ToF-SIMS检测由于化学预处理,微生物处理以及物理或遗传修饰引起的化学变化,以及该仪器在木质纤维素生物质研究中可能的未来应用。

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