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Synthesis of Quaternary Ammonium Salt from Rosin and Its Inhibition to Some Wood Decay Fungi

机译:松香合成季铵盐及其对某些木腐真菌的抑制作用

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Many pine trees could secrete oleo-resin when they were wounded. The oleo-resin was a mixture of turpentine and rosin. After evaporation of volatile turpentine, rosin remained and covered the wound to protect wood from fungi and insects. From this point, rosin protects wood naturally. However, rosin is not bioactive against most wood decay fusngi. In this report, a bioactive rosin derivated, quaternary ammonium salt (QAS), was synthesized and its bioactivity against some wood decay fungi was tested. Firstly, the rosin was esterified by epoxy chloropropane with the mole ratio of 1:2, the reaction time of 3.5h at 90°C. The intermediate was 3-rosin acyloxy-2- hydroxypropyl chlorine. Then, the intermediate reacted with demethylamine to produce N-(3-rosin acyloxy-2-hydroxyl) propyl-N, N dimethylamine at the following conditions: their mole ratio of 1:2, reaction temperature of 80°C and reaction time of 2.5h. Finally, the N-(3-rosin acyloxy-2-hydroxyl) propyl-N, N dimethylamine was quaternized by epoxy chloropropane with the mole ratio of 1:1, the reaction time of 3h at 90°C, and the yield was 72.8%. The chemical structure of the product was identified by FTIR and ]H NMR. The QAS content of the product was characterized by gravimetric analysis with sodium tetraphenylborate as its precipitation reagent, and liquid chromatography analysis (LC) analysis. The antifungal activity of the product was determined by paper-disc method with wood decay fungi such as Trametes versicolor, Gloeophyllum trabeum and wood stain fungi such as Aspergillus niger and Paecilomyces variot Bainier. The anti-fungal experiment results signified that the QAS of rosin is active to these fungi, especially Gloeophyllum trabeum. Since it is produced easily from rosin, which is renewable and not expensive, QAS of rosin could be a potential wood preservative. Further study is planning.
机译:许多松树受伤时会分泌油脂树脂。树脂是松节油和松香的混合物。挥发的松节油蒸发后,松香残留并覆盖伤口,以保护木材免受真菌和昆虫的侵害。从这一点出发,松香可以自然地保护木材。但是,松香对大多数木材腐烂镰刀菌没有生物活性。在此报告中,合成了具有生物活性的松香衍生物季铵盐(QAS),并测试了其对某些木材腐烂真菌的生物活性。首先,将松香用环氧氯丙烷以1:2的摩尔比酯化,在90°C下反应时间为3.5h。中间体是3-松香酰氧基-2-羟丙基氯。然后,中间体在以下条件下与脱甲胺反应生成N-(3-松香酰氧基-2-羟基)丙基-N,N二甲胺:它们的摩尔比为1:2,反应温度为80°C,反应时间为2.5小时最后,将N-(3-松香酰氧基-2-羟基)丙基-N,N二甲基胺用环氧氯丙烷以1:1的摩尔比季铵化,在90℃下反应3h,产率为72.8。 %。产物的化学结构通过FTIR和1 H NMR鉴定。通过以四苯硼酸钠为沉淀剂的重量分析和液相色谱分析(LC)分析来表征产品的QAS含量。该产品的抗真菌活性通过纸碟法测定,并使用木材腐烂真菌(如Trametes versicolor,Gloeophyllum trabeum)和木材染色真菌(如Aspergillus niger和Paecilomyces variot Bainier)进行测定。抗真菌实验结果表明,松香的QAS对这些真菌,特别是小叶globephyllum trabeum具有活性。由于松香很容易由可再生且不昂贵的松香生产,因此松香的QAS可能是一种潜在的木材防腐剂。正在计划进一步的研究。

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