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Wood Surface Modification—Classic and Modern Approaches in Wood Chemical Treatment by Esterification Reactions

机译:木材表面改性 - 通过酯化反应进行木材化学处理的经典和现代方法

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Wood surface modification is a comprehensive concept which, in time, turned out to be as successful as challenging when it comes to improve the resistance of wood during its life cycle in both indoor and outdoor applications. The initial approaches have aimed at simple methods with immediate results. Nowadays, the paradigm has slightly changed due to the scientific and technical advances, and some methods has become intermediate stages in more complex processes, after being used, for long time, as stand-alone procedures. The esterification was employed as a convenient method for wood surface modification due to the high amount of free hydroxyl groups available at the surface of wood and other lignocellulosic materials. Therefore, different esterification approaches were tested: activated condensation with carboxylic acids (monocarboxylic, as well as dicarboxylic acids, fatty acids, etc.) in the presence of condensation activating agents (such as trifluoroacetic anhydride); reaction with β-halogen-substituted carboxylic acids; esterification using carboxylic acids derivatives (acyl chlorides, anhydrides) or even multifunctional carboxylic acids (i.e., tricine). Thus, wood with improved dimensional stability and weathering resilience, higher fire resistance, enhanced hydrophobic character, and mechanical durability was obtained. This paper offers an overview of some of the most recent advances reported in the field, presented in a systematic manner, using the type of reaction as classification criterion. The main improvements will be outlined in a critical assessment in order to provide an useful tool for a wise choice in future applications.
机译:木材表面改造是一种综合概念,随着时间的推移,当在室内和户外应用中的生命周期内提高木材的阻力方面,这一点概括起来的挑战。最初的方法旨在目的是立即结果的简单方法。如今,由于科学和技术进步,范式略有变化,在使用后,一些方法已经成为更复杂的过程中的中间阶段,长期以来,作为独立手术。由于木材和其他木质纤维素材料表面可获得的高量游离羟基,使用酯化是木材表面改性的方便方法。因此,测试了不同的酯化方法:在缩合活化剂(例如三氟乙酸酐)存在下,用羧酸(单羧酸和二羧酸,脂肪酸等)活化冷凝。与β-卤素取代的羧酸反应;使用羧酸衍生物(酰氯,酸酐)或甚至多官能羧酸(即三环)酯化。因此,在具有改善的尺寸稳定性和耐候性,耐火性,增强的疏水性质和机械耐久性的木材。本文概述了现场中报告的一些最新进展,以系统方式呈现,使用反应类型作为分类标准。主要改进将在批判性评估中概述,以便为未来的应用程序提供明智的选择的有用工具。

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