土基建筑材料对真菌增殖的敏感性:实验室和现场评估

Q2 Engineering
Alexis Simons, A. Bertron, C. Roux, A. Laborel-Preneron, J. Aubert, C. Roques
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引用次数: 7

摘要

建筑材料对环境和居住者健康的影响是当今的一个优先问题。生态建筑材料,如土质材料,由于生态和经济的双重因素,目前正重新受到人们的关注。微生物在室内材料上的大量繁殖会导致建筑空气质量的恶化,从而增加居住者的健康风险。室内空气质量的问题提出了关于使用土质建筑材料及其可能对真菌发展的易感性的问题。土材料的微生物群及其在这种支撑物上生长的能力确实研究得很少。本研究的重点是在生产过程中对细菌和真菌菌群进行量化。模拟水化事故,分析了极端湿度对土砖表面和内部微生物群发育的影响。在制造过程中,特别是在热处理干燥后,这些材料的初始微生物群急剧减少。剩余微生物的增殖仅在高湿条件下观察到,特别是在具有植物聚集体的土材料中。此外,对建筑物中使用的自然干燥的土材料进行了现场取样。微生物密度测定结果显示,室内微生物密度高于人工标本,微生物浓度和检测到的类群主要与室内使用和建筑历史有关。这些结果为微生物在这些材料上的增殖提供了更好的理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Susceptibility of earth-based construction materials to fungal proliferation: laboratory and in situ assessment
The impact of building materials on the environment and the health of occupants is nowadays a priority issue. Ecological construction materials such as earthen materials are currently experiencing a regain of interest due to both ecological and economic factors. The microbial proliferation on indoor materials can induce a deterioration of the building air quality and lead to an increase of health risks for the occupants. The issue of indoor air quality raises questions about the use of earthen building materials and their possible susceptibility to fungal development. The microflora of earthen materials and their ability to grow on such support are indeed poorly studied. This study focused on the quantification of both bacterial and fungal microflora along the manufacturing process. The impact of extreme humidity, simulating a hydric accident, on microflora development was analyzed on the surface and inside earthen bricks. The initial microflora of these materials was dramatically reduced during the manufacturing process, especially after heat treatment for drying. Proliferation of remaining microorganisms was only observed under high humidity condition, in particular for earthen materials with vegetal aggregates. Moreover, in situ samplings were performed on naturally dried earthen materials used in buildings. The characterization of the microbial density revealed a higher microbial density than on manufactured specimens, while microbial concentration and detected taxa seemed mainly related to the room use and building history. These results provide a better understanding of microbial proliferation on these materials.
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来源期刊
RILEM Technical Letters
RILEM Technical Letters Materials Science-Materials Science (all)
CiteScore
5.00
自引率
0.00%
发文量
13
审稿时长
10 weeks
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