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Design Requirements for Sensing and Detoxification Devices to be Used in Large Review on Typical Pollutants and Their Concentrations

机译:对典型污染物及其浓度进行大规模审查的传感和解毒设备的设计要求

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This work is a part of the NANOSECURE integrated project, supported by the European Commission under Framework Programme 6, with the objective to use nanotechnology in developing sensing and detoxification devices. Besides being sensitive, flexible, compact and inexpensive, it is important that the sensors do not respond to normal indoor air pollutants in their typical concentrations, as false-positive signals can have serious consequences. The purpose of this paper is to list typical indoor air pollutants and indicate ranges of concentrations in which they normally occur. Among others, these results may draw designers' and manufacturers' attention to the importance of chemical selectivity, sufficient capacity and robustness to withstand normal exposures in buildings. The main focus is on assembly buildings, airport terminals, and train and metro stations, as spaces in these buildings can be especially endangered by attacks using chemical or biological agents due to their size and population density. The literature review shows lack of information on concentrations of chemical and biological pollutants in these buildings. It also points out a need for calibration and testing in both laboratory environments with clean and well-defined air quality and in atmospheres with typical and often complex compositions.
机译:这项工作是NANOSECURE集成项目的一部分,该项目由欧盟委员会在框架计划6的支持下进行,旨在利用纳米技术开发传感和排毒设备。除了灵敏,灵活,紧凑和廉价外,重要的是传感器对典型浓度的正常室内空气污染物也无反应,因为假阳性信号可能会造成严重后果。本文的目的是列出典型的室内空气污染物,并指出其通常出现的浓度范围。这些结果可能会吸引设计者和制造商注意化学选择性,足够的容量和坚固性以承受建筑物中正常暴露的重要性。主要关注的是集会建筑,机场航站楼以及火车站和地铁站,因为这些建筑中的空间由于其规模和人口密度而受到化学或生物制剂的袭击,因此尤其危险。文献综述显示,缺乏关于这些建筑物中化学和生物污染物浓度的信息。它还指出,需要在实验室环境中以干净,明确的空气质量进行校准和测试,并在具有典型且通常是复杂成分的大气中进行校准和测试。

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