Particulate matter indoors: a strategy to sample and monitor size-selective fractions
Particulate matter (PM) is an important player in indoor air quality. Even though PM limit values are in force for more than a decade in Europe and reference methods are well in place for ambient air, measuring indoor PM concentration still remains a challenge and standardizing a measurement protocol is complex. As people stay most of their time indoors, indoor PM is of great interest in terms of public health, as concentration can be drastically different to the one outdoors. This review aims to provide key information to the indoor air monitoring communities, to better understand principal methods suitable for the analysis of indoor PM with their respective main influencing parameters. Advantages and drawbacks of each method are discussed and specific awareness is raised to avoid wrong data interpretation in specific situations. The inter-instrument deviation is also explained and, when possible, methods to correct are proposed.
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Format: | artículo biblioteca |
Language: | English |
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Taylor & Francis
2022-01-01
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Subjects: | Real-time monitoring, Gravimetric analysis, Indoor air quality (IAQ), Indoor particulate matter, Particle number and size distribution, http://metadata.un.org/sdg/3, Ensure healthy lives and promote well-being for all at all ages, |
Online Access: | http://hdl.handle.net/10261/309561 https://api.elsevier.com/content/abstract/scopus_id/85132772359 |
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dig-idaea-es-10261-3095612024-05-15T20:56:57Z Particulate matter indoors: a strategy to sample and monitor size-selective fractions Bergmans, Benjamin Cattaneo, Andrea Duarte, Regina M.B.O. Gomes, João F.P. Saraga, Dikaia Ródenas García, Mila Querol, Xavier Liotta, Leonarda F. Safell, John Spinazzé, Andrea Rovelli, Sabrina Borghi, Francesca Cavallo, Domenico M. Villanueva, Florentina Di Gilio, Alessia Maggos, Thomas Mihucz, Victor G. 0000-0002-4324-449X 0000-0002-2962-7259 0000-0002-1825-6528 0000-0003-2579-6669 0000-0002-8877-0776 0000-0002-6549-9899 0000-0002-6403-5101 0000-0003-3452-2803 0000-0003-1853-2999 0000-0002-1016-1823 0000-0001-9951-4498 0000-0002-1193-4402 Real-time monitoring Gravimetric analysis Indoor air quality (IAQ) Indoor particulate matter Particle number and size distribution http://metadata.un.org/sdg/3 Ensure healthy lives and promote well-being for all at all ages Particulate matter (PM) is an important player in indoor air quality. Even though PM limit values are in force for more than a decade in Europe and reference methods are well in place for ambient air, measuring indoor PM concentration still remains a challenge and standardizing a measurement protocol is complex. As people stay most of their time indoors, indoor PM is of great interest in terms of public health, as concentration can be drastically different to the one outdoors. This review aims to provide key information to the indoor air monitoring communities, to better understand principal methods suitable for the analysis of indoor PM with their respective main influencing parameters. Advantages and drawbacks of each method are discussed and specific awareness is raised to avoid wrong data interpretation in specific situations. The inter-instrument deviation is also explained and, when possible, methods to correct are proposed. This publication is based upon work from COST Action CA17136 supported by COST (European Cooperation in Science and Technology) (www.cost.eu) for which the authors are grateful. The support and original concept designed by Nicola Carslaw (University of York) is hereby, acknowledged. One of the authors (Regina M. B. O. Duarte) also wishes to acknowledge FCT/MCTES for the financial support to CESAM (UIDP/50017/2020 + UIDB/50017/2020 + LA/P/0094/2020) through national funds. Peer reviewed 2023-05-24T10:37:24Z 2023-05-24T10:37:24Z 2022-01-01 artículo http://purl.org/coar/resource_type/c_6501 Applied Spectroscopy Reviews 57 (8): 675-704 (2022) 05704928 http://hdl.handle.net/10261/309561 10.1080/05704928.2022.2088554 2-s2.0-85132772359 https://api.elsevier.com/content/abstract/scopus_id/85132772359 en Applied Spectroscopy Reviews Publisher's version https://doi.org/10.1080/05704928.2022.2088554 Sí open Taylor & Francis |
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Real-time monitoring Gravimetric analysis Indoor air quality (IAQ) Indoor particulate matter Particle number and size distribution http://metadata.un.org/sdg/3 Ensure healthy lives and promote well-being for all at all ages Real-time monitoring Gravimetric analysis Indoor air quality (IAQ) Indoor particulate matter Particle number and size distribution http://metadata.un.org/sdg/3 Ensure healthy lives and promote well-being for all at all ages |
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Real-time monitoring Gravimetric analysis Indoor air quality (IAQ) Indoor particulate matter Particle number and size distribution http://metadata.un.org/sdg/3 Ensure healthy lives and promote well-being for all at all ages Real-time monitoring Gravimetric analysis Indoor air quality (IAQ) Indoor particulate matter Particle number and size distribution http://metadata.un.org/sdg/3 Ensure healthy lives and promote well-being for all at all ages Bergmans, Benjamin Cattaneo, Andrea Duarte, Regina M.B.O. Gomes, João F.P. Saraga, Dikaia Ródenas García, Mila Querol, Xavier Liotta, Leonarda F. Safell, John Spinazzé, Andrea Rovelli, Sabrina Borghi, Francesca Cavallo, Domenico M. Villanueva, Florentina Di Gilio, Alessia Maggos, Thomas Mihucz, Victor G. Particulate matter indoors: a strategy to sample and monitor size-selective fractions |
description |
Particulate matter (PM) is an important player in indoor air quality. Even though PM limit values are in force for more than a decade in Europe and reference methods are well in place for ambient air, measuring indoor PM concentration still remains a challenge and standardizing a measurement protocol is complex. As people stay most of their time indoors, indoor PM is of great interest in terms of public health, as concentration can be drastically different to the one outdoors. This review aims to provide key information to the indoor air monitoring communities, to better understand principal methods suitable for the analysis of indoor PM with their respective main influencing parameters. Advantages and drawbacks of each method are discussed and specific awareness is raised to avoid wrong data interpretation in specific situations. The inter-instrument deviation is also explained and, when possible, methods to correct are proposed. |
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0000-0002-4324-449X |
author_facet |
0000-0002-4324-449X Bergmans, Benjamin Cattaneo, Andrea Duarte, Regina M.B.O. Gomes, João F.P. Saraga, Dikaia Ródenas García, Mila Querol, Xavier Liotta, Leonarda F. Safell, John Spinazzé, Andrea Rovelli, Sabrina Borghi, Francesca Cavallo, Domenico M. Villanueva, Florentina Di Gilio, Alessia Maggos, Thomas Mihucz, Victor G. |
format |
artículo |
topic_facet |
Real-time monitoring Gravimetric analysis Indoor air quality (IAQ) Indoor particulate matter Particle number and size distribution http://metadata.un.org/sdg/3 Ensure healthy lives and promote well-being for all at all ages |
author |
Bergmans, Benjamin Cattaneo, Andrea Duarte, Regina M.B.O. Gomes, João F.P. Saraga, Dikaia Ródenas García, Mila Querol, Xavier Liotta, Leonarda F. Safell, John Spinazzé, Andrea Rovelli, Sabrina Borghi, Francesca Cavallo, Domenico M. Villanueva, Florentina Di Gilio, Alessia Maggos, Thomas Mihucz, Victor G. |
author_sort |
Bergmans, Benjamin |
title |
Particulate matter indoors: a strategy to sample and monitor size-selective fractions |
title_short |
Particulate matter indoors: a strategy to sample and monitor size-selective fractions |
title_full |
Particulate matter indoors: a strategy to sample and monitor size-selective fractions |
title_fullStr |
Particulate matter indoors: a strategy to sample and monitor size-selective fractions |
title_full_unstemmed |
Particulate matter indoors: a strategy to sample and monitor size-selective fractions |
title_sort |
particulate matter indoors: a strategy to sample and monitor size-selective fractions |
publisher |
Taylor & Francis |
publishDate |
2022-01-01 |
url |
http://hdl.handle.net/10261/309561 https://api.elsevier.com/content/abstract/scopus_id/85132772359 |
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