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Biological invasion in the indoor environment: the spread of Eurotium halophilicum on library materials

机译:室内环境中的生物入侵:Eurotium Halophilicum对图书馆材料的传播

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Volumes from an archive of the University of Milan showed whitish-grey discolouration putatively caused by microorganisms. Microscopic and viability assays proved that discolouration from two volumes were characterized by a marked presence of viable fungi, demonstrating that they were mainly biological in nature. Fungal sequences were phylogenetically most closely related to Eurotium, Aspergillus, Candida, Penicillium, Alternaria, Phaeosphaeria, Capnodiales and Pleosporales taxa. SEM analysis showed that Eurotium halophilicum is dominant on the two infected volumes. Viable airborne fungal loads near the two volumes were higher than recommended maximum values, demonstrating that airborne fungi could represent a source of risk. The airborne microbial community sampled in two different seasons was composed by fungi belonging in the genera Aspergillus, Candida and Eurotium. The detection of E. halophilicum also in the archival air indicated a possible source of contamination. Fluctuations of thermo-hygrometric values were also observed in the archive in the different seasons. The occurrence of white efflorescence on the stored volumes most likely depended on the lack of both a dusting programme and air-conditioning, and insufficient ventilation in the repository, and, on the hygroscopic behaviour of the binding materials used in the manufacture of the volumes. (C) 2017 Elsevier Ltd. All rights reserved.
机译:来自米兰大学档案的卷显示出紫色的灰色变色,由微生物引起。显微镜和活力测定证明,两种体积的变色以可行性真菌的显着存在为特征,表明它们主要是生物学。真菌序列是与Eurotium,Aspergillus,Candida,青霉素,alterraria,phaeosphaeria,capnodales和葡萄球菌类群相关最密切相关的。 SEM分析表明,Eurotium Halophilicum在两种感染的体积上都是显着的。在两卷附近的可行空气的真菌载荷高于推荐的最大值,展示空中真菌可以代表风险的源泉。在两个不同的季节中采样的空中微生物群落由属于属曲霉,念珠菌和欧洲竞技的真菌组成。在档案空气中也检测E. Halophilicum的检测表明了可能的污染源。在不同季节的档案中也观察到热湿度值的波动。在储存量上发生白风风险最小可能依赖于缺少粉尘程序和空调,并且储存库中的通风不足,以及在制造中使用的粘合材料的吸湿性。 (c)2017 Elsevier Ltd.保留所有权利。

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