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Time-Resolved Characterization of Indoor Air Quality due to Human Activity and Likely Outdoor Sources during Early Evening Secondary School Wrestling Matches

机译:由于人类活动和初夜中学摔跤比赛中的人类活动和户外来源的时分分辨表征

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Despite positive health outcomes associated with physical activity as well as individual and team sports, poor indoor air and environmental quality can adversely affect human health, performance, and comfort. We conducted a 14-month field case study incorporating two winter sports regular seasons (12/2017–2/2019) including analyses of particulate matter (PMx) in air and in dust, carbon dioxide (CO 2 ), temperature, and relative humidity (RH%) during secondary or high school wrestling activities in southern New Jersey, USA. After planning and piloting methods during the first winter sports regular season (12/2017–2/2018), during the second winter sports regular season (1–2/2019), we conducted a purposeful simultaneous real-time sampling midgymnasium adjacent to the wrestling mats. Gymnasium occupancy ranged 100–500 people. Data collected included inhalable PM 10 resuspended from floor mats, fine respirable PM 2.5 , and indoor CO 2 , temperature, and RH%. Short-term real-time elevated PM 10 levels were directly compared with simultaneously documented wrestling match bouts, e.g., student-athlete takedowns and pins. PM 10 and PM 2.5 levels were compared with other known documented activities indoors (e.g., snack bar) and sources outdoors (e.g., adjacent parking lot and major freeway). To understand CO 2 , temperature, and RH% data, we characterized the HS gym mechanical ventilation system—no doors or windows outdoors—and recorded occupancy during match hours. Indoor CO 2 levels ranged ~700–1000?ppm during match #1 on 1/23/2019 but ranged from ~900 to 1900?ppm during match #2 on 1/30/2019, with 1000?ppm for the majority of the time (and throughout the entire varsity match when occupancy was at maximum). Future research should further characterize PM 10 constituents in mat dust and indoor air with larger samples of schools and matches.
机译:尽管与体育活动以及个人和团队体育相关的积极健康结果,但室内空气和环境质量差可能会对人类健康,性能和舒适感到不利影响。我们进行了一个14个月的现场案例研究,包括两个冬季体育常规季节(12/2017-2 / 2019),包括在空气中和灰尘,二氧化碳(CO 2),温度和相对湿度的颗粒物质(PMX)分析(RH%)在美国南部的南部中学或高中摔跤活动期间。在第一次冬季体育常规赛季(2017年2月2日/ 2018年)的计划和试验方法后,在第二次冬季体育常规赛季(1-2 / 2019),我们进行了一个有目的的同步实时采样中间人,毗邻摔跤垫。体育馆入住范围100-500人。收集的数据包括可吸入的PM 10,重新悬浮从地板垫,可轻盈的PM 2.5和室内CO 2,温度和RH%。与同时记录的摔跤比赛相比,直接与摔跤比赛,例如,学生 - 运动员发出和引脚直接与同时记录的摔跤比赛,直接进行了短期实时升高。将PM 10和PM 2.5水平与室内其他已知的文档活动(例如,小吃吧)和户外来源(例如,邻近的停车场和主要高速公路)进行比较。要了解CO 2,温度和RH%数据,我们在比赛时刻在户外或户外户外占用占用的HS Gym机械通风系统的特征。室内二氧化碳2级范围范围〜700-1000?PPM在比赛中匹配#1 2019年1月23日〜900至1900?PPM在比赛中比赛#2在1/30/2019,& 1000?PPM为大多数当占用最大值时的时间(以及整个整个校准时)。未来的研究应该进一步表征PM 10在垫子灰尘和室内空气中的10种成分,其中包含较大的学校样本和比赛。

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