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首页> 外文期刊>Journal of medical systems >Monitoring Indoor Air Quality for Enhanced Occupational Health
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Monitoring Indoor Air Quality for Enhanced Occupational Health

机译:监测室内空气质量,以提高职业健康

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摘要

Indoor environments are characterized by several pollutant sources. Because people spend more than 90% of their time in indoor environments, several studies have pointed out the impact of indoor air quality on the etiopathogenesis of a wide number of non-specific symptoms which characterizes the "Sick Building Syndrome", involving the skin, the upper and lower respiratory tract, the eyes and the nervous system, as well as many building related diseases. Thus, indoor air quality (IAQ) is recognized as an important factor to be controlled for the occupants' health and comfort. The majority of the monitoring systems presently available is very expensive and only allow to collect random samples. This work describes the system (iAQ), a low-cost indoor air quality monitoring wireless sensor network system, developed using Arduino, XBee modules and micro sensors, for storage and availability of monitoring data on a web portal in real time. Five micro sensors of environmental parameters (air temperature, humidity, carbon monoxide, carbon dioxide and luminosity) were used. Other sensors can be added for monitoring specific pollutants. The results reveal that the system can provide an effective indoor air quality assessment to prevent exposure risk. In fact, the indoor air quality may be extremely different compared to what is expected for a quality living environment. Systems like this would have benefit as public health interventions to reduce the burden of symptoms and diseases related to "sick buildings".
机译:室内环境的特点是有几个污染源。由于人们90%以上的时间都在室内环境中度过,几项研究指出了室内空气质量对大量非特异性症状的发病机制的影响,这些症状是“病态建筑综合征”的特征,涉及皮肤、上下呼吸道、眼睛和神经系统,以及许多与建筑相关的疾病。因此,室内空气质量(IAQ)被认为是对居住者的健康和舒适度进行控制的一个重要因素。目前可用的大多数监测系统非常昂贵,只允许采集随机样本。这项工作描述了该系统(iAQ),一种低成本的室内空气质量监测无线传感器网络系统,使用Arduino、XBee模块和微型传感器开发,用于在门户网站上实时存储和提供监测数据。使用了五个环境参数微型传感器(空气温度、湿度、一氧化碳、二氧化碳和光度)。可以添加其他传感器来监测特定污染物。结果表明,该系统可以提供有效的室内空气质量评估,以防止暴露风险。事实上,室内空气质量可能与优质生活环境的预期截然不同。这样的系统将作为公共卫生干预措施受益,以减轻与“病态建筑”相关的症状和疾病负担。

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