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首页> 外文期刊>Science of the total environment >Detection Of Fungal Development In A Closed Environment Through The Identification Of Specific Voc: Demonstration Of A Specific Voc Fingerprint For Fungal Development
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Detection Of Fungal Development In A Closed Environment Through The Identification Of Specific Voc: Demonstration Of A Specific Voc Fingerprint For Fungal Development

机译:通过确定特定的VOC在封闭的环境中检测真菌的发育:特定的VOC指纹用于真菌发育的演示

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摘要

The occurrence of disease amongst the occupants of 'mouldy' environments has been widely described in the literature.However,the detection of such moulds in closed environments remains difficult,particularly in the event of recent (before the first deterioration) or masked contamination (behind a material).In this context,the present study aimed to determine a specific chemical fingerprint for fungal development detectable in closed environments (dwellings,office,museum...).To achieve this,chemical emissions from sterile and artificially contaminated by moulds materials were analyzed and compared using a descriptive statistical method.Principal Component Analysis is thus chosen to analyze the results.PCA generated optimum and similar graphical representations of the scatterplot representing the data matrix.This statistical approach made it possible to identify an emission fingerprint without applying any preconception as to the type of emitted compound.Statistical analysis of the data then enabled confirmation of the impact of moulds on total VOC emissions.This emission of specific compounds resulted in obtaining a signature for the presence of fungal development in an environment,defined by specific ions.This analysis,and use of these ions applied to dwellings,made it possible to distinguish those with proven fungal development from those with no sign of mould or with a context favorable to fungal development,thus demonstrating that a chemical fingerprint specific to fungal development could be detected in indoor environments.
机译:文献中已经广泛描述了在“发霉”环境中疾病的发生。然而,在封闭环境中检测这种霉菌仍然很困难,尤其是在最近(第一次恶化之前)或掩盖的污染(在后面)的情况下。在这种情况下,本研究旨在确定在封闭环境(住宅,办公室,博物馆...)中可检测到的真菌发育的特定化学指纹。为实现此目的,无菌和人工受霉菌材料污染的化学排放物使用描述性统计方法进行分析和比较,因此选择主成分分析法对结果进行分析.PCA生成代表数据矩阵的散点图的最佳且相似的图形表示形式,这种统计方法使得无需应用任何方法即可识别发射指纹对排放化合物的类型有先入之见。数据的统计分析然后确认霉菌对VOC排放总量的影响。这种特定化合物的排放导致获得了由特定离子定义的环境中真菌生长的信号。这种分析以及将这些离子用于住宅,从而可以将那些已证实具有真菌生长能力的真菌与那些没有霉菌迹象或具有有利于真菌生长环境的真菌区分开来,从而证明可以在室内环境中检测到特定于真菌生长的化学指纹。

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