岭南农宅围护结构表面优势霉菌的生长特性实验研究
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1.华南农业大学水利与土木工程学院;2.加州大学伯克利分校建筑环境中心,美国

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国家自然科学基金青年基金 51708228;省级大学生创新创业训练计划项目S202210564127


Experimental study on the growthcharacteristics of dominant mold on the surface of farm house envelope in Lingnan
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1.South China Agricultural University;2.University of California,Berkeley

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    摘要:

    为降低岭南地区农宅因围护结构霉变带来的安全和健康危害,在实地取样和正交实验的基础上研究温度和湿度对该地区优势菌生长的影响,并对培养基上霉菌的生长特性进行拟合优选分析,以期扩充建筑中优势霉菌生长特性数据库,为预测霉菌在波动的温湿度条件下的生长风险提供理论支持。首先,用刮擦法在岭南典型农宅获取霉斑样品,采用高通量测序法鉴定优势菌种类;然后,在恒温培养箱中设置22/26/30℃和60%/70%/85%的温湿度组合,研究优势菌在马铃薯葡萄糖琼脂培养基(Potato Dextrose Agar,简称PDA)上的生长特性,并建立其随时间和温湿度变化的动力学模型;最后,在人工气候室中设置26/30/34℃和50%/90%的环境温湿度组合,研究优势菌在常用建材上的生长特性。结果表明:岭南地区以大白灰为内饰面材料的农村住宅围护结构表面的优势菌属为枝孢霉Cladosporium、Neoderiesia和枝顶孢霉Acremonium;26℃是枝孢霉最容易生长繁殖的环境温度;木材和PDA上环境相对湿度越高,枝孢霉生长越快;Gompertz模型和响应面模型可较好的表征枝孢霉在培养基上的生长特性。

    Abstract:

    In order to reduce the safety and health hazards of the enclosure, on the basis of the field sampling and the orthogonal experiment, the influence of the growth characteristics of the dominant bacteria in order to expand the database of the dominant mold in the building and provide reasonable support for predicting the growth risk of mold under fluctuating temperature and humidity. First, mildew samples were obtained in Lingnan typical farm house by scraping, and high throughput sequencing was used to identify the dominant bacteria species; then 22 / 26 / 30℃ and 60% / 70% / 85% temperature and humidity combinations were used to study the growth characteristics of the dominant bacteria on Potato Dextrose Agar (PDA) and establish a kinetic model with time and temperature and humidity. Finally, 26 / 30 / 34℃ and 50% / 90% ambient temperature and humidity combinations in the artificial climate chamber to study the growth characteristics of the dominant bacteria on common building materials. The results show that in Lingnan area, the dominant fungus on the surface of the rural residential envelope structure with large white ash as the interior surface material are Cladosporium, Neoderiesia and Acremonium; 26℃ is the environmental temperature for the spore to grow and reproduce; the higher the relative humidity, the faster the growth; Gompertz model and response surface model can show the growth characteristics of spore on the culture medium.

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  • 收稿日期:2024-01-27
  • 最后修改日期:2024-03-05
  • 录用日期:2024-04-04
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