有机杀菌剂与无机盐复合用于木材防护的抑菌效果评价

Jyoti Papola , Anil Kumar Sethy , R. Sundararaj , Rakesh Kumar
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引用次数: 0

摘要

木材是一种非常有用的建筑材料,已经在几个应用中使用了很多年。木材的有机成分使其易受几种生物变质剂的影响。为了延长其使用寿命,木材需要用木材防腐剂处理。关于第一代和第二代木材防腐剂的环境问题导致了使用碳基第三代防腐剂的转变,特别是三唑。对环境和人体健康不利影响最小的防腐剂制剂日益受到关注。本研究考察了有机杀菌剂与无机盐结合使用作为木材防腐剂的抗真菌性能,采用了培养皿生物测定法。此外,还评估了浸渍芒果木块的抗真菌效果。结果表明,对褐腐病和白腐病的减重率分别为2.37 %和3.39 %。这些结果表明,有机杀菌剂与无机盐混合使用可作为木材可持续保存的有效方法。利用扫描电子显微镜(SEM)和傅里叶变换红外光谱(FTIR)分别分析了其微观结构和化学结构的变化。有机杀菌剂与无机盐的掺入增强了对真菌的抵抗力;此外,变质木材的FTIR分析和SEM显微照片表明,与对照组相比,处理过的木材的降解程度更低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessing the antifungal efficacy of organic fungicides combined with inorganic salts for wood protection
Wood is a very useful construction material that has been used for many years in several applications. The organic composition of wood makes it vulnerable to several bio-deteriorating agents. To prolong its lifespan, wood needs to be treated with wood preservatives. Environmental concerns regarding first and second-generation wood preservatives have led to a shift toward using carbon-based third-generation preservatives, particularly triazoles. Preservative formulations with minimal adverse on the environment and human health have gained increasing focus. This study examines the antifungal properties of an organic fungicide used in combination with inorganic salts as a wood preservative, employing a petri plate bioassay. Additionally, antifungal efficacy was assessed in impregnated mango wood blocks. The results indicated a gradual decline in weight loss percentages of 2.37 % and 3.39 % against both brown rot and white rot fungi. These results imply that using a combination of inorganic salts with organic fungicides can serve as an effective way to preserve wood sustainably. Both Scanning electron microscopy (SEM) and Fourier transform infrared spectroscopy (FTIR) were used to analyze alterations in microstructure and chemical structure, respectively. The incorporation of organic fungicides with inorganic salts enhances resistance to fungi; furthermore, FTIR analysis and SEM micrographs of deteriorated wood demonstrated that treated specimens showed less degradation compared to controls.
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