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Impact of enzymatic treatment on wood surface free energy: contact angle analysis

机译:酶处理对木材表面自由能的影响:接触角分析

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摘要

The aim of this study was to investigate the effect of cellulase treatment on wood surface physicochemical characteristics. The cedar wood samples were treated by cellulase for 30min at different concentrations: 0.2, 0.4, 0.6, 0.8, 1, and 1.2mg/ml. Then the physicochemical properties (the wetting behavior and interfacial free energy) of the cedar samples surfaces were characterized by the sessile drop technique. The obtained results showed that the untreated cedar wood samples exhibited a hydrophobic character with a high water contact angle ((w)=71.9 degrees) and a negative value of the interfacial free energy (Giwi=-59.3mJ/m(2)). Thereafter, the wood hydrophobicity decreased continuously until it reached the hydrophilicity qualitatively (at the first concentration of cellulase (0.2mg/ml)) and quantitatively (at 0.8mg/ml of cellulase). The cedar wood surface treatment with cellulase also revealed a significant evolution of the acid-base parameters. Moreover, a linear relationship between the degree of hydrophobicity and the cellulase concentration has been found. This study clearly shows the impact that could have the produced enzyme by micro-organisms involved in wood biodegradation and especially their consequences on the physicochemical surface properties of the wooden materials.
机译:本研究旨在探讨纤维素酶处理对木材表面理化特性的影响。雪松木样品用纤维素酶处理30min,浓度为0.2、0.4、0.6、0.8、1和1.2mg/ml。然后,采用无柄液滴技术对雪松样品表面的理化性质(润湿行为和界面自由能)进行了表征。结果表明,未经处理的雪松木样品表现出疏水性,水接触角高((w)=71.9度),界面自由能为负值(Giwi=-59.3mJ/m(2))。此后,木材疏水性不断降低,直到在定性(纤维素酶第一浓度(0.2mg/ml)和定量(纤维素酶0.8mg/ml)下)达到亲水性。用纤维素酶处理的雪松木材表面也揭示了酸碱参数的显着演变。此外,还发现疏水性程度与纤维素酶浓度之间存在线性关系。这项研究清楚地表明了参与木材生物降解的微生物可能产生的酶的影响,特别是它们对木质材料的物理化学表面性能的影响。

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