Department of Civil, Chemical, Environmental and Materials Engineering-DICAM, University of Bologna, via Terracini 28, 40131 Bologna, Italy.
Department of Civil, Chemical, Environmental and Materials Engineering-DICAM, University of Bologna, viale del Risorgimento 2, 40136 Bologna, Italy.
Sensors (Basel). 2018 Nov 6;18(11):3798. doi: 10.3390/s18113798.
Indoor air quality (IAQ) management in public spaces is assuming a remarkable importance. Busy environments, like airport terminals, are currently regarded as possible hotspots and IAQ is a crucial element for passengers and staff protection, as well as a key aspect of airport passenger experience. A one-month monitoring period has been performed on IAQ in the airport of Bologna (Italy), as prototypal example of large regional airport. Four strategic areas within the airport have been equipped with electronic monitoring platforms, including different contaminants and two microclimatic sensors. Data suggest that daily variation in IAQ parameters typically follow the activity pattern of the different environments under study (i.e., passengers' flows) for gaseous contaminants, where particulate matter counts oscillate in a definite range, with a significant role played by ventilation system. Gaseous contaminants show a correlation between indoor and outdoor concentrations, mainly due to airside activities. Micro-climatic comfort parameters have been tested to match with standards for commercial environments. As results appears in line with typical households IAQ values, the current air ventilation system appears to be adequate. Nevertheless, an integrated air management system, based on real-time monitoring, would lead to optimization and improvement in environmental and economical sustainability.
公共场所的室内空气质量(IAQ)管理正变得越来越重要。目前,像机场候机楼这样繁忙的环境被认为是可能的热点区域,IAQ 是保护乘客和工作人员的关键因素,也是机场乘客体验的关键方面。在博洛尼亚机场(意大利)进行了为期一个月的室内空气质量监测,该机场是大型地区机场的典型范例。在机场的四个战略区域配备了电子监测平台,包括不同的污染物和两个微气候传感器。数据表明,室内空气质量参数的日变化通常遵循不同环境(即乘客流量)的活动模式,对于气态污染物,颗粒物计数在一定范围内波动,通风系统起着重要作用。气态污染物的室内和室外浓度之间存在相关性,主要是由于机坪活动造成的。微气候舒适参数已根据商业环境的标准进行了测试。由于结果与典型家庭的室内空气质量值一致,因此当前的空气通风系统似乎是足够的。然而,基于实时监测的综合空气管理系统将导致环境和经济可持续性的优化和改善。