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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >A Sustainable Approach of Enzymatic Grafting on Eucalyptus globulus Wood by Laccase from the Newly Isolated White-Rot Basidiomycete Marasmiellus palmivorus VE111
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A Sustainable Approach of Enzymatic Grafting on Eucalyptus globulus Wood by Laccase from the Newly Isolated White-Rot Basidiomycete Marasmiellus palmivorus VE111

机译:来自新孤立的白腐碱玉米菌玉米虫草棕榈泥族桉树玉米胶酶酶嫁接的可持续途径.Marasmiellus Palmivorus VE111

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摘要

Enzymatic grafting on eucalyptus wood with laccase from the basidiomycete Marasmiellus palmivorus VE111, recently isolated in Southern Brazil, was investigated. Three phenol and amine hydrophobic substrates and two mediator compounds were used to verify the potential of the enzyme for oxidative grafting. Laccase-assisted grafting of octyl and lauryl gallate was effectively achieved, presenting better results with mediator addition. In the water contact angle tests, the water drop kept 60% and 37% of its initial angle, with octyl gallate and lauryl gallate, respectively. Consequently, the enzymatic grafting of these compounds allowed an increase in the hydrophobicity of eucalyptus veneers (up to 10% and 5%, respectively), which is an interesting feature for the building and furniture industry to improve the durability and dimensional stability of wood. The results obtained in this work demonstrate the possibility of an environmentally friendly pathway to help solve a major challenge in wooden construction. In addition, the promising results of this work potentiate the use of a novel laccase, manufactured on-site, to be applied in sustainable processes in wood and furniture industries and other applications where hydrophobization of materials is desirable.
机译:酶促嫁接桉树木与碱霉素的漆酶 Marasmiellus Palmivorus Ve111,最近在巴西南部分离出来。使用三种苯酚和胺疏水基材和两种介体化合物来验证酶氧化接枝的潜力。有效地实现了辛基和月桂基的漆酶辅助接枝,呈现出介质添加结果的更好的结果。在水接触角试验中,水滴保持60%和37%的初始角度,分别具有辛基酸盐和月桂酸酯。因此,这些化合物的酶促接枝允许桉树贴乙烯液体的疏水性增加(分别为10%和5%),这是建筑和家具行业的有趣特征,以提高木材的耐用性和尺寸稳定性。这项工作中获得的结果表明了环保途径的可能性,以帮助解决木结构中的主要挑战。此外,这项工作的有希望的结果能够使用现场制造的新型漆酶,以便在木材和家具行业的可持续过程中应用以及所需的疏水化的应用。

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