王凯. 地铁空调不同净化处理方式对送风中污染物的影响[J]. 上海预防医学, 2018, 30(6): 539-543. DOI: 10.19428/j.cnki.sjpm.2018.18694
引用本文: 王凯. 地铁空调不同净化处理方式对送风中污染物的影响[J]. 上海预防医学, 2018, 30(6): 539-543. DOI: 10.19428/j.cnki.sjpm.2018.18694
Kai WANG. Air pollutants impacted by different purification methods of subway air conditioning and ventilation system[J]. Shanghai Journal of Preventive Medicine, 2018, 30(6): 539-543. DOI: 10.19428/j.cnki.sjpm.2018.18694
Citation: Kai WANG. Air pollutants impacted by different purification methods of subway air conditioning and ventilation system[J]. Shanghai Journal of Preventive Medicine, 2018, 30(6): 539-543. DOI: 10.19428/j.cnki.sjpm.2018.18694

地铁空调不同净化处理方式对送风中污染物的影响

Air pollutants impacted by different purification methods of subway air conditioning and ventilation system

  • 摘要:
    目的了解上海轨道交通采用不同净化处理设备对空调通风系统送风中污染物的影响,为改善地铁空气质量提供参考建议。
    方法上海某地铁线路2期、3期工程车站公共区域的空调通风系统分别采用2种不同净化方式,本次检测分别选取相同类型车站各50%,在通风运行工况下对送风中可吸入颗粒物、细菌、真菌的浓度进行检测。
    结果新建某地铁线路空调通风系统送风污染物总体污染水平低于卫生标准要求(P < 0.05)。2期工程空调送风中污染水平整体高于3期的水平,前者的细菌总数、真菌总数、可吸入颗粒物浓度均值分别是后者的1.48倍、1.74倍和1.21倍,差异具有统计学意义(P < 0.05)。前者粒径≥2 μm的粗粒子表面附着的细菌、真菌浓度分别是后者的1.64倍和2.06倍(P < 0.05),粒径 < 2 μm的细粒子与超细粒子表面附着的微生物浓度则无明显差异(P>0.05)。
    结论地铁空调通风系统在采用初效过滤装置的基础上,增设电子式空气净化装置可有效降低空气中可吸入颗粒物浓度和颗粒物上附着的细菌和真菌。

     

    Abstract:
    ObjectiveTo investigate the influence of different purification methods on air supply pollution of air conditioning ventilation system in Shanghai rail transit system, then to provide suggestions for improving the air quality of subway.
    MethodsAs the air conditioning and ventilation system in the public area of stage 2 and 3 construction stations in Shanghai subway route has two different purification methods, 50% of the stations of the same type were selected in stage 2 and 3 respectively in this test, and measured the levels of airborne particulate matter, bacteria and fungi of air conditioning ventilation system, in the same ventilation mode.
    ResultsThe levels of air supply pollutants by air conditioning ventilation system of new subway is lower than that of hygienic standard (P < 0.05).However, the results showed that the level of air conditioning pollution in stage 2 is higher than that in stage 3, and the average concentrations of bacteria, fungi and airborne particulate matter were 1.48 times, 1.74 times and 1.21 times respectively (P < 0.05).Moreover, the concentration of bacteria, fungi on the surface of a particle(≥2μm) in stage 2 were 1.64 times and 2.01 times respectively higher than that in stage 3 (P < 0.05), but concentrations of bacteria, fungi on the surface of a particle(< 2μm) with no significant difference (P>0.05).
    ConclusionAdding an electronic air purifying disinfection device can effectively reduce the levels of airborne particulate matter, bacteria and fungi, on the basis of a primary filter in air conditioning and ventilation system of the subway system.

     

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