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Evaluation of optical properties and chemical structure changes in enzymatic hydrolysis lignin during heat treatment

机译:热处理过程中酶解木质素的光学性质和化学结构变化的评估

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Heat treatment is an excellent method of improving the properties of wood. Study of the physical and chemical changes of lignin during heat treatment is essential for expanding the application areas based on new properties. In this study, we investigated the degradation behavior of enzymatic hydrolysis lignin (EHL) heat treated at different temperatures (180 °C, 200 °C, and 220 °C) and for different durations (2 h and 4 h). The optical property changes of EHL before and after heat treatment were investigated by measuring color and UV-Vis absorbance changes. Fourier transform infrared spectroscopy (FTIR) was used to characterize the chemical modifications resulting from heat treatment. Mass spectrometry (MS) was used to elucidate the variation of the mass-to-charge (m/z) ratios of ions produced by EHL during heat treatment. These experimental results indicate that both the EHL mass loss percentages and chromatic aberration exhibited an increase with increasing temperature and duration of heat treatment. In contrast, the UV-Vis absorbance, most of the FTIR absorption peaks, and the m/z values of EHL showed a decreasing trend. It was found that the color change of lignin was not the major cause of wood discoloration during heat treatment. The better resistance of the heat treated wood toward solar radiation was attributed to the lower UV absorption of post-treatment lignin.
机译:热处理是改善木材性能的极好方法。研究木质素在热处理过程中的物理和化学变化对于扩大基于新特性的应用领域至关重要。在这项研究中,我们研究了酶水解木质素(EHL)在不同温度(180°C,200°C和220°C)和不同持续时间(2 h和4 h)下热处理的降解行为。通过测量颜色和UV-Vis吸光度变化,研究了热处理前后EHL的光学性能变化。傅里叶变换红外光谱(FTIR)用于表征热处理产生的化学修饰。质谱(MS)用于阐明EHL在热处理过程中产生的离子的质荷比( m / z )的变化。这些实验结果表明,EHL质量损失百分比和色差都随温度和热处理时间的增加而增加。相反,EHL的UV-Vis吸光度,大多数FTIR吸收峰和 m / z 值呈下降趋势。发现木质素的颜色变化不是热处理期间木材变色的主要原因。热处理后的木材对太阳辐射的抵抗力更好,这归因于后处理木质素对紫外线的吸收较低。

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