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Study of the Characteristics and Comprehensive Fuzzy Assessment of Indoor Air Chemical Contamination in Public Buildings

机译:公共建筑室内空气化学污染的特点及综合模糊评价研究

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Quality-of-life is improving daily with continuous improvements in urban modernization, which necessitates more stringent requirements for indoor air quality. Fuzzy assessment enables us to obtain the grade of the evaluation object by compound calculation with the help of membership function and weight coefficient, overcoming the limitations of traditional methods applied to develop environmental quality indices. First, this study continuously measured SO 2 , O 3 , NO 2 , NO, CO, CO 2 , PM 10 , PM 2.5 , and other chemical pollutants during the daytime operating hours of a library and a canteen. We analyzed the concentration distributions of the particles in the air were discussed based on 31 different particle diameters. Finally, the experimental data in department store and waiting hall were analyzed by fuzzy evaluation, with the following results. (1) The library and canteen PM 10 concentrations peaked at 07:45 in the morning and was elevated during the afternoon (48.9 and 59 μg/m 3 , respectively). (2) The Pearson correlation coefficient of the PM 10 and PM 2.5 concentrations in the library was 0.98. PM 10 and SO 2 in the canteen were negatively correlated, with a correlation coefficient of ?0.65. PM 2.5 and PM 1 were always highly positively correlated. (3) The high concentration of particles in the library was associated with the small particle size range (0.25~0.45 μm). (4) By applying the fuzzy comprehensive evaluation method, the library grade evaluation was the highest level, and the waiting hall was the lowest. This study enhances our understanding of the indoor chemical contamination relationships for public buildings and highlights the urgent need for improving indoor air quality.
机译:每日生活质量正在改善城市现代化的持续改进,这需要更严格的室内空气质量要求。模糊评估使我们能够通过隶属函数和重量系数通过复合计算获得评估对象的等级,克服应用于开发环境质量指标的传统方法的局限性。首先,本研究在图书馆和食堂的白天工作时间不断测量SO 2,O 3,NO 2,NO,CO,CO 2,PM 10,PM 2.5和其他化学污染物。我们分析了基于31种不同的粒径讨论了空气中颗粒的浓度分布。最后,通过模糊评估分析了部门商店和等待大厅的实验数据,下列结果进行了分析。 (1)图书馆和食堂PM 10浓度在早上07:45达到峰值,在午后(分别为48.9和59μg/ m 3)升高。 (2)文库中PM 10和PM 2.5浓度的Pearson相关系数为0.98。在食堂中PM 10且SO 2呈负相关,相关系数为0.65。 PM 2.5和PM 1总是高度肯定的相关性。 (3)文库中的高浓度与小粒度范围(0.25〜0.45μm)有关。 (4)通过应用模糊综合评价方法,图书馆等级评估是最高水平,等候大厅是最低的。本研究提高了我们对公共建筑室内化学污染关系的理解,并突出了改善室内空气质量的迫切需求。

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