桦木与浸渍成分间相相互作用的研究

Konstantin Zhuzhukin, Larisa Belchinskaya, E. Tomina, Aleksandr Zyablov, Wu Hoang Yen, Aleksey Chuykov
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引用次数: 0

摘要

本文研究了一种有前景的旧机油与桦木在三个相互垂直的方向(端、径向、切向)上的界面相互作用特性。选择桦木样品作为研究对象。界面相互作用是通过接触角的值来确定的,当使用基于二手机油的浸渍组合物时,接触角的值相对于蒸馏水有显著的降低,这显然是由于木材和浸渍组合物的疏水性基质之间的界面相互作用。当水分子润湿木材的亲水表面时,由于吸附和毛细凝结的结果,由于纤维素、半纤维素和木质素分子链表面存在不饱和羟基,水偶极子被吸引到带负电的表面。与未浸渍木材的数据相比,用旧机油浸渍的润湿木材的动态和静态接触角分析可以确定这些角的显著增加。显然,由于木材的官能团与浸渍成分的主要成分的界面相互作用,接触角增加,导致疏水表面的形成。在比较润湿木材与水、旧机油的接触角时,发现润湿旧机油的接触角值比润湿水的接触角值要小,这是由于旧机油分子向木材的扩散更密集,木材与旧机油的官能团形成了分子间的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of interphase interaction of birch wood with impregnating composition
The purpose of this work was to study the properties of interfacial interaction of the basis of a new promising impregnating composition of used motor oil with birch wood in three mutually perpendicular directions (end, radial, tangential). Samples of birch wood were chosen as objects of study. The interfacial interaction was determined by the sessile drop method by the value of the contact angle, which makes it possible to establish a significant decrease in their values relative to distilled water when using an impregnating composition based on used motor oil, apparently as a result of the interfacial interaction between the wood and the hydrophobic matrix of the impregnating composition. When water molecules wet the hydrophilic surface of wood, which occurs as a result of adsorption and capillary condensation, water dipoles are attracted to the negatively charged surface of the molecular chains of cellulose, hemicelluloses and lignin due to the presence of unsaturated hydroxyl valences on their surface. An analysis of the dynamic and static contact angles of wetting wood impregnated with used engine oil made it possible to establish a significant increase in these angles compared to the data obtained for unimpregnated wood. The contact angles increase, apparently, as a result of the interfacial interaction of the functional groups of wood and the main components of the impregnating composition, leading to the formation of a hydrophobic surface. When comparing the contact angle of wetting wood with water and used engine oil, a decrease in its value was found when wetting used engine oil in comparison with water due to more intensive diffusion of used engine oil molecules into wood and the formation of intermolecular interactions of functional groups of wood and used engine oil.
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