Air Quality Measurements and Education: Improving Environmental Awareness of High School Students

S. Höfner, A. Schütze
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引用次数: 4

Abstract

Indoor air quality (IAQ) has gained renewed importance in public awareness, especially in times of the corona pandemic. In classrooms in particular, regular ventilation is essential to keep the potential viral load in the air as low as possible and thus reduce the likelihood of infection with the corona virus. But also the concentration of other pollutants, such as particulate matter (PM) or volatile organic compounds (VOCs), which are responsible for symptoms such as concentration disorders, headaches and dizziness can be reduced. In addition to the direct measurement of VOC pollutants using metal oxide semiconductor (MOS) gas sensors, CO2 is also measured as an indicator gas for monitoring IAQ. However, young people in particular have only a diffuse idea of air pollutants. This can be explained by the fact that many of these air pollutants are both odorless and colorless and are only detectable using suitable sensors. In order to provide students with a comprehensive picture of the topic of air quality and thus strengthen their environmental awareness, declarative, conceptual and procedural knowledge needs to be combined. This includes knowledge about different sensor principles, pollutant types, their limits, health effects on humans and strategies to maintain good air quality, both indoors and outdoors. To ensure that this knowledge does not remain inert, authentic learning scenarios with a direct relevance to everyday life must be provided. Measuring pollutants in indoor air in particular offers the opportunity to apply what has been learned in a context-oriented manner. By linking the performance of measurements with sensors and the subsequent interpretation of measurement results, environmental awareness can be sharpened with regard to IAQ. This can be achieved by measuring pollutants with sensors and then interpreting and classifying the measurement results. In this paper, various student experiments with gas sensors are presented that introduce the function principles of different sensor types, record air quality data and provide meaningful interpretation. Based on these experiences, students are encouraged to develop their own research questions on air quality.
空气质量测量与教育:提高中学生的环境意识
室内空气质量(IAQ)在公众意识中重新获得了重要性,尤其是在新冠疫情期间。特别是在教室里,定期通风对于保持空气中潜在的病毒载量尽可能低,从而降低感染冠状病毒的可能性至关重要。但其他污染物的浓度也可以降低,如颗粒物(PM)或挥发性有机化合物(VOCs),这些污染物会导致注意力障碍、头痛和头晕等症状。除了使用金属氧化物半导体(MOS)气体传感器直接测量VOC污染物外,还测量CO2作为监测室内空气质量的指示气体。然而,年轻人尤其对空气污染物只有一个模糊的概念。这可以通过以下事实来解释,即这些空气污染物中的许多既没有气味又无色,并且只能使用合适的传感器进行检测。为了让学生全面了解空气质量的主题,从而加强他们的环境意识,需要结合陈述性、概念性和程序性知识。这包括关于不同传感器原理、污染物类型、其限制、对人类健康的影响以及保持室内外良好空气质量的策略的知识。为了确保这些知识不会保持惰性,必须提供与日常生活直接相关的真实学习场景。测量室内空气中的污染物尤其提供了一个机会,以面向上下文的方式应用所学到的知识。通过将测量结果与传感器的性能以及随后对测量结果的解释联系起来,可以提高对室内空气质量的环境意识。这可以通过用传感器测量污染物,然后对测量结果进行解释和分类来实现。本文介绍了各种气体传感器的学生实验,介绍了不同传感器类型的功能原理,记录了空气质量数据,并提供了有意义的解释。根据这些经验,鼓励学生提出自己的空气质量研究问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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