李杰, 刘强, 周晓龙, 赵敏娴, 王瑛. 2020—2021年苏州市公共场所集中空调通风系统卫生状况[J]. 环境卫生学杂志, 2023, 13(9): 692-695. DOI: 10.13421/j.cnki.hjwsxzz.2023.09.009
    引用本文: 李杰, 刘强, 周晓龙, 赵敏娴, 王瑛. 2020—2021年苏州市公共场所集中空调通风系统卫生状况[J]. 环境卫生学杂志, 2023, 13(9): 692-695. DOI: 10.13421/j.cnki.hjwsxzz.2023.09.009
    LI Jie, LIU Qiang, ZHOU Xiao-long, ZHAO Min-xian, WANG Ying. Sanitation of central air conditioning ventilation systems in public places in Suzhou, China, 2020—2021[J]. Journal of Environmental Hygiene, 2023, 13(9): 692-695. DOI: 10.13421/j.cnki.hjwsxzz.2023.09.009
    Citation: LI Jie, LIU Qiang, ZHOU Xiao-long, ZHAO Min-xian, WANG Ying. Sanitation of central air conditioning ventilation systems in public places in Suzhou, China, 2020—2021[J]. Journal of Environmental Hygiene, 2023, 13(9): 692-695. DOI: 10.13421/j.cnki.hjwsxzz.2023.09.009

    2020—2021年苏州市公共场所集中空调通风系统卫生状况

    Sanitation of central air conditioning ventilation systems in public places in Suzhou, China, 2020—2021

    • 摘要:
      目的 了解苏州市公共场所集中空调通风系统卫生状况。
      方法 采用随机抽样的方式于2020年7—8月至2021年8—9月对苏州市区正常使用的38家次集中空调通风系统进行卫生监测, 检测送风中PM10、细菌总数、真菌总数、β-溶血性链球菌, 风管内表面细菌总数、真菌总数、积尘量, 冷却水中嗜肺军团菌, 依据《公共场所集中空调通风系统卫生规范》(WS 394-2012)和《公共场所卫生检验方法》(GB/T 18204.5-2013)进行采样和检测。
      结果 2020—2021年检测的38家次集中空调通风系统中, 检测指标总体合格率为93.8%, 各场所中宾馆酒店合格率最高, 医疗场所合格率较低, 差异有统计学意义(χ2=11.87, P<0.05)。集中空调送风指标PM10、细菌总数、真菌总数、β-溶血性链球菌合格率分别为97.8%、92.4%、76.1%、100.0%, 各指标间差异有统计学意义(χ2=41.81, P<0.05);风管内表面细菌总数、真菌总数、积尘量合格率为98.4%、89.5%、100.0%, 各指标间差异有统计学意义(χ2=20.42, P<0.05);冷却水中嗜肺军团菌检出率为10.5%。
      结论 苏州市公共场所集中空调通风系统卫生状况总体较好, 但真菌和军团菌污染需要加以关注。

       

      Abstract:
      Objective To investigate the sanitation of central air conditioning ventilation systems in public places in Suzhou.
      Methods From July to August, 2020 to August to September. 2021, 38 central air conditioning ventilation systems in normal use in the urban area of Suzhou were monitored by random sampling. PM10, total bacterial count, total fungi count, β-hemolytic streptococcus in supply air, total bacteria count, total fungi count, dust accumulation on the inner surface of the air duct, and legionella pneumophila in cooling water were detected. Sampling and testing were conducted according to the Hygienic Specification of Central Air Conditioning Ventilation System in Public Buildings(WS 394-2012)and the Examination Method for Public Places(GB/T 18204.5-2013).
      Results Among the 38 central air conditioning ventilation systems tested from 2020 to 2021, the overall qualified rate of indicators was 93.8%, with the highest qualified rate in hotels, the lowest qualified rate in medical places (χ2=11.87, P < 0.05). The qualified rates of PM10, total bacteria count, total fungi count, and β-hemolytic streptococcus in air supply were 97.8%, 92.4%, 76.1%, and 100.0%, respectively, with statistically significant differences among indicators (χ2=41.81, P < 0.05). The qualified rates of total bacteria count, total fungi count and dust accumulation on the inner surface of the air duct were 98.4%, 89.5%, and 100.0%, respectively, with statistically significant differences among indicators (χ2=20.42, P < 0.05). The detection rate of Legionella pneumophila in cooling water was 10.5%.
      Conclusion The sanitation of central air conditioning ventilation systems in public places in Suzhou is generally good, but attention needs to be paid to fungal and legionella pollution.

       

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