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使用亲水真菌和嗜干真菌作为生物传感器评估家庭环境中的真菌指数。

Assessment of home environments with a fungal index using hydrophilic and xerophilic fungi as biologic sensors.

机构信息

Institute of Environmental Biology, JDC Corporation, Nakatsu Aikawa-cho, Aikou-gun Kanagawa, Japan.

出版信息

Indoor Air. 2012 Jun;22(3):173-85. doi: 10.1111/j.1600-0668.2011.00752.x. Epub 2011 Nov 16.

Abstract

UNLABELLED

Previously, the author proposed a 'fungal index' that quantifies the capacity for fungal growth in a test environment where a device (fungal detector) encapsulating spores of a xerophilic sensor fungus Eurotium herbariorum was placed. It was also found that an extremely xerophilic fungus, Aspergillus penicillioides, was suitable as a sensor fungus at sites with lower relative humidity (RH). In this report, the hydrophilic fungus Alternaria alternata was added to sensor fungi for the determination of the index in extremely humid environments. Measurements of the index and observations of the formation of spores by the sensor fungi were made in stable climates in moisture chambers, under natural conditions in homes, and in bathrooms prepared in an artificial climate chamber. Higher index values and earlier sporulation were obtained at higher RH in stable climates. The hydrophilic Alt. alternata showed the greatest response at 100% and 97.3% RH, the moderately xerophilic Eur. herbariorum, at 94%, 84%, and 75% RH, and the extremely xerophilic Asp. penicillioides, at 71% RH. In homes, the hydrophilic fungus was most active in water-usage areas, and the xerophilic fungi were most active in non-water-usage areas. Sporulation was observed on sensor fungi in fungal detectors placed in rooms where the index exceeded 18 ru/week after one-month exposure. Sites where the index exceeded 18 ru/week were referred to as damp, where fungal contamination seems to be unavoidable. Evaluations of ventilation systems in bathrooms with extremely humid climates showed typical examples of a countermeasure to fungal contamination.

PRACTICAL IMPLICATIONS

The purpose of this study is to establish a fungal index applicable in home environments with extremely high to relatively low relative humidity climates. The sensor fungus that showed the greatest response in a fungal detector (a device encapsulating spores of sensor fungi) served as not only a quantitative but also a qualitative indicator of the environment tested, indicating the type of fungi that would contaminate the site. A fungal index would be a good tool for detecting dampness that induces fungal contamination, which has adverse effects on human health. Evaluations of indoor climates would provide information useful to building owners, builders, designers, advisers, medical practitioners, and so on. Selection of the most suitable insulation systems in various buildings under different climates or evaluations of the drying process in water-damaged buildings could also be possible using fungal detectors and measurements of fungal indices.

摘要

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此前,作者提出了一种“真菌指数”,用于量化设备(封装嗜干性传感器真菌 Eurotium herbariorum 孢子的真菌探测器)所在测试环境中的真菌生长能力。还发现,一种极其嗜干性的真菌 Aspergillus penicillioides 适合在相对湿度(RH)较低的地点作为传感器真菌。在本报告中,将亲水真菌 Alternaria alternata 添加到传感器真菌中,以确定在极潮湿环境中的指数。在湿度室的稳定气候、家庭中的自然条件以及在人工气候室中准备的浴室中,对指数进行测量并观察传感器真菌形成孢子。在稳定气候中,RH 越高,指数值越高,孢子形成越早。亲水的 Alt. alternata 在 100%和 97.3%RH 时反应最大,中度嗜干性的 Eur. herbariorum 在 94%、84%和 75%RH 时反应最大,而极其嗜干性的 Asp. penicillioides 在 71%RH 时反应最大。在家庭中,亲水真菌在用水区域最活跃,而嗜干性真菌在非用水区域最活跃。在真菌探测器中放置一个月后,暴露在指数超过 18ru/周的房间中,观察到传感器真菌上的孢子形成。指数超过 18ru/周的地方被称为潮湿,在那里真菌污染似乎是不可避免的。对极潮湿气候浴室通风系统的评估显示了一种对抗真菌污染的对策的典型示例。

实际意义

本研究的目的是建立适用于高至低相对湿度环境的家庭环境的真菌指数。在真菌探测器(封装传感器真菌孢子的设备)中反应最大的传感器真菌不仅是环境测试的定量指标,也是定性指标,表明会污染该地点的真菌类型。真菌指数将是检测引起真菌污染的潮湿的良好工具,这种潮湿会对人类健康产生不利影响。对室内气候的评估将为业主、建筑商、设计师、顾问、医疗从业者等提供有用的信息。使用真菌探测器和真菌指数测量,还可以选择各种建筑物在不同气候下最适合的隔热系统,或者评估水损坏建筑物的干燥过程。

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