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Wood Colorization through Pressure Treating: The Potential of Extracted Colorants from Spalting Fungi as a Replacement for Woodworkers’ Aniline Dyes

机译:通过压力处理对木材进行着色:从速溶真菌中提取色素的潜力可替代木工的苯胺染料

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摘要

The extracellular colorants produced by Chlorociboria aeruginosa, Scytalidium cuboideum, and Scytalidium ganodermophthorum, three commonly utilized spalting fungi, were tested against a standard woodworker’s aniline dye to determine if the fungal colorants could be utilized in an effort to find a naturally occurring replacement for the synthetic dye. Fungal colorants were delivered in two methods within a pressure treater—the first through solubilization of extracted colorants in dichloromethane, and the second via liquid culture consisting of water, malt, and the actively growing fungus. Visual external evaluation of the wood test blocks showed complete surface coloration of all wood species with all colorants, with the exception of the green colorant (xylindein) from C. aeruginosa in liquid culture, which did not produce a visible surface color change. The highest changes in external color came from noble fir, lodgepole pine, port orford cedar and sugar maple with aniline dye, cottonwood with the yellow colorant in liquid culture, lodgepole pine with the red colorant in liquid culture, red alder and Oregon maple with the green colorant in dichloromethane, and sugar maple and port orford cedar with the yellow colorant in dichloromethane. The aniline dye was superior to the fungal colorants in terms of internal coloration, although none of the tested compounds were able to completely visually color the inside of the test blocks.
机译:将三种常用的剥落真菌分别由铜绿小球藻,小球藻和鳞球菌产生的细胞外着色剂与标准木工的苯胺染料进行了测试,以确定是否可以利用该真菌着色剂来寻找天然替代合成色素的方法。染料。真菌着色剂在压力处理机中以两种方法传递:一种是通过将提取的着色剂溶解在二氯甲烷中来实现的,另一种是通过由水,麦芽和活跃生长的真菌组成的液体培养来实现的。视觉上对木材测试块的外部评估显示,所有液体物种均具有所有着色剂的完全表面着色,但液体培养中来自铜绿假单胞菌的绿色着色剂(木二糖苷)没有产生明显的表面颜色变化。外部颜色变化最大的是高贵冷杉,黑松,Port Orford雪松和带有苯胺染料的枫树枫木,液体培养中的黄着色剂是三叶松,液体培养中的红着色剂是赤松,赤der木和俄勒冈州的枫树。在二氯甲烷中的绿色着色剂,在枫糖和奥福德雪松中的糖枫,在二氯甲烷中的黄色着色剂。苯胺染料在内部着色方面优于真菌着色剂,尽管没有一种被测化合物能够在外观上完全目测着色。

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