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Multiple Perturbation Two-Dimensional Correlation Analysis of Cellulose by Attenuated Total Reflection Infrared Spectroscopy

机译:衰减全反射红外光谱法对纤维素的多重扰动二维相关分析

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摘要

An extension of the two-dimensional (2D) correlation analysis scheme for multi-dimensional perturbation is described. A simple computational form is provided to construct synchronous correlation and disrelation maps for the analysis of microscopic imaging data based on two independent perturbation variables. Sets of time-dependent attenuated total reflection infrared (ATR-IR) spectra of water and cellulose mixtures were collected during the evaporation of water from finely ground cellulose. The system exhibits complex behaviors in response to two independent perturbations, i.e., evaporation time and grinding time. Multiple perturbation 2D analysis reveals a specific difference in the rate of evaporation of water molecules when accompanied by crystallinity changes of cellulose. It identifies subtle differences in the volatility of water, which is related to the crystalline structure of cellulose.
机译:描述了用于多维摄动的二维(2D)相关性分析方案的扩展。提供了一种简单的计算形式来构造基于两个独立摄动变量的同步相关和不相关图,用于分析显微成像数据。在从细磨的纤维素中蒸发水的过程中,收集了水和纤维素混合物随时间变化的衰减全反射红外(ATR-IR)光谱集。该系统表现出响应于两个独立的扰动即蒸发时间和研磨时间的复杂行为。多重扰动二维分析显示,当纤维素结晶度变化时,水分子的蒸发速率存在特定差异。它确定了水挥发性的细微差异,这与纤维素的晶体结构有关。

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