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Impregnation of Scots pine and beech with tannin solutions: effect of viscosity and wood anatomy in wood infiltration

机译:单宁溶液浸渍苏格兰松树和山毛榉:粘度和木材解剖结构对木材渗透的影响

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摘要

The impregnation process of Scots pine and beech samples with tannin solutions was investigated. The two materials involved in the process (impregnation solution and wood samples) are studied in depth. Viscosity of mimosa tannin solutions and the anatomical aspect of beech and Scots pine were analysed and correlated. The viscosity of tannin solutions presents a non-newtonian behaviour when its pH level increases, and in the case of addition of hexamine as a hardener, the crosslinking of the flavonoids turns out to be of great importance. During the impregnation of Scots pine (Pinus sylvestris L.) and beech (Fagus sylvatica L.), the liquid and solid uptakes were monitored while taking into consideration the different conditions of the impregnation process. This method allowed to identify the best conditions needed in order to get a successful preservative uptake for each wooden substrate. The penetration mechanism within the wood of both species was revealed with the aid of a microscopic analysis. Scots pine is impregnated through the tracheids in the longitudinal direction and through parenchyma rays in the radial direction, whereas in beech, the penetration occurs almost completely through longitudinal vessels.
机译:研究了单宁溶液对苏格兰松树和山毛榉样品的浸渍过程。深入研究了该过程中涉及的两种材料(浸渍溶液和木材样品)。分析和关联了含羞草单宁溶液的粘度以及山毛榉和苏格兰松树的解剖学特征。当单宁溶液的pH值增加时,其粘度呈非牛顿性,在添加六胺作为硬化剂的情况下,类黄酮的交联非常重要。在浸渍苏格兰松树(Pinus sylvestris L.)和山毛榉(Fagus sylvatica L.)的过程中,在考虑浸渍过程的不同条件的同时,监测了液体和固体的摄入量。这种方法可以确定最佳的条件,以使每种木质底材都能成功地吸收防腐剂。借助显微镜分析揭示了这两种物种在木材中的渗透机理。樟子松在纵向上通过气管渗入,在径向上通过薄壁射线浸入,而在山毛榉中,渗透几乎完全通过纵向血管进行。

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