首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Identification of MVOCs Produced by Coniophora puteana and Poria placenta Growing on WPC Boards by Using Subtraction Mass Spectra
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Identification of MVOCs Produced by Coniophora puteana and Poria placenta Growing on WPC Boards by Using Subtraction Mass Spectra

机译:减法质谱法鉴定在WPC板上生长的腐殖菌和Por虫产生的MVOC

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摘要

Volatile fungal metabolites are responsible for various odors and may contribute to a “sick building syndrome” (SBS) with a negative effect on the heath of building. The authors have attempted to fill the research gaps by analyzing microbial volatile organic compounds (MVOCs) originating from representatives of the Basidiomycetes class that grow on wood-polymer composite (WPC) boards. WPCs have been analyzed as a material exposed to biodeterioration. Indoor air quality (IAQ) is affected by the increased use of WPCs inside buildings, and is becoming a highly relevant research issue. The emission profiles of MVOCs at various stages of WPC decay have been demonstrated in detail for Coniophora puteana and Poria placenta, and used to set the European industrial standards for wood-decay fungi. Differences in the production of MVOCs among these species of fungi have been detected using the thermal desorption-gas chromatography/mass spectrometry (TD-GC/MS) method. This study identifies the production of alcohols, aldehydes, ketones, carboxylic acids and other compounds during one month of fungal growth. The identified level of metabolites indicates a relation between the level of air pollution and condition of the WPC material, which may become part of IAQ quantification in the future. The study points to the species-specific compounds for representatives of brown and white-rot fungi and the compounds responsible for their odor. In this study, 1-Octen-3-ol was indicated as a marker for their active growth, which is also associated with SBS. The proposed experimental set-up and data analysis are a simple and convenient way to obtain emission profiles of MVOCs from microbes growing on different materials.
机译:挥发性真菌代谢物会引起各种气味,并可能导致“病态建筑综合症”(SBS),对建筑物的健康产生负面影响。作者试图通过分析源自木塑复合材料(WPC)板上生长的担子菌类代表的微生物挥发性有机化合物(MVOC)来填补研究空白​​。 WPCs已作为暴露于生物恶化的材料进行了分析。室内空气质量(IAQ)受建筑物内WPC使用量增加的影响,并且正成为一个高度相关的研究问题。在腐烂的腐殖菌和Por的胎盘中,已经详细证明了WPC腐烂各个阶段MVOC的排放特征,并用于设定欧洲木腐真菌工业标准。使用热脱附-气相色谱/质谱(TD-GC / MS)方法已检测到这些真菌种类中MVOC的产生差异。这项研究确定了在真菌生长一个月内酒精,醛,酮,羧酸和其他化合物的产生。鉴定出的代谢物水平表明空气污染水平与WPC材料状况之间的关系,将来可能会成为IAQ量化的一部分。该研究指出了代表褐色和白色腐烂真菌代表的物种特异性化合物以及造成其气味的化合物。在这项研究中,1-Octen-3-ol被指示为它们活跃生长的标志物,也与SBS有关。拟议的实验设置和数据分析是一种简单便捷的方法,可从生长在不同材料上的微生物获得MVOC的排放曲线。

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