Issue 2, 2015

Representativeness of shorter measurement sessions in long-term indoor air monitoring

Abstract

Indoor air quality (IAQ) considerably influences health, comfort and the overall performance of people who spend most of their lives in confined spaces. For this reason, there is a strong need to develop methods for IAQ assessment. The fundamental issue in the quantitative determination of IAQ is the duration of measurements. Its inadequate choice may result in providing incorrect information and this potentially leads to wrong conclusions. The most complete information may be acquired through long-term monitoring. However it is typically perceived as impractical due to time and cost load. The aim of this study was to determine whether long-term monitoring can be adequately represented by a shorter measurement session. There were considered three measurable quantities: temperature, relative humidity and carbon dioxide concentration. They are commonly recognized as indicatives for IAQ and may be readily monitored. Scaled Kullback–Leibler divergence, also called relative entropy, was applied as a measure of data representativeness. We considered long-term monitoring in a range from 1 to 9 months. Based on our work, the representative data on CO2 concentration may be acquired while performing measurements during 20% of time dedicated to long-term monitoring. In the case of temperature and relative humidity the respective time demand was 50% of long-term monitoring. From our results, in indoor air monitoring strategies, there could be considered shorter measurement sessions, while still collecting data which are representative for long-term monitoring.

Graphical abstract: Representativeness of shorter measurement sessions in long-term indoor air monitoring

Article information

Article type
Paper
Submitted
24 Jul 2014
Accepted
09 Dec 2014
First published
09 Dec 2014

Environ. Sci.: Processes Impacts, 2015,17, 381-388

Author version available

Representativeness of shorter measurement sessions in long-term indoor air monitoring

M. Maciejewska and A. Szczurek, Environ. Sci.: Processes Impacts, 2015, 17, 381 DOI: 10.1039/C4EM00409D

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