First total OH reactivity emission measurements from a Nordic wetland
Volatile organic compounds (VOCs) are ever-present compounds in the air we breathe. They are emitted by natural and anthropogenic sources and are modified by atmospheric oxidants. VOCs affect air quality and human health, form and grow aerosol particles, and can impact Earth's radiative balance...
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Other Authors: | , , , , , |
Format: | Article in Journal/Newspaper |
Language: | English |
Published: |
Finnish Environment Institute
2023
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Online Access: | http://hdl.handle.net/10138/566419 |
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author | Schallhart, Simon Praplan, Arnaud P. Tykkä, Toni Reijrink, Nina Williams, Jonathan Hakola, Hannele Hellén, Heidi |
author2 | Ilmatieteen laitos Finnish Meteorological Institute orcid:0000-0002-1923-6211 orcid:0000-0002-9944-3084 orcid:0000-0002-9711-9053 orcid:0000-0001-7022-3857 |
author_facet | Schallhart, Simon Praplan, Arnaud P. Tykkä, Toni Reijrink, Nina Williams, Jonathan Hakola, Hannele Hellén, Heidi |
author_sort | Schallhart, Simon |
collection | HELDA – University of Helsinki Open Repository |
description | Volatile organic compounds (VOCs) are ever-present compounds in the air we breathe. They are emitted by natural and anthropogenic sources and are modified by atmospheric oxidants. VOCs affect air quality and human health, form and grow aerosol particles, and can impact Earth's radiative balance. Total hydroxyl radical (OH) reactivity measurements are a valuable tool for assessing the comprehensiveness of measured VOCs and can give valuable insights into in situ atmospheric chemistry. Especially in remote forested environments, missing or unaccounted for reactivity has been substantial, caused by either unmeasured primary emissions or secondary oxidation products. This study presents OH reactivity and VOC measurements over a Nordic, subarctic wetland in summer. Over half of the OH reactivity from emissions could not be attributed, while the remaining measured fraction is dominated by isoprene (42%), followed by sesquiterpenes (3%). |
format | Article in Journal/Newspaper |
genre | Boreal Environment Research Subarctic |
genre_facet | Boreal Environment Research Subarctic |
id | ftunivhelsihelda:oai:helda.helsinki.fi:10138/566419 |
institution | Open Polar |
language | English |
op_collection_id | ftunivhelsihelda |
op_relation | Boreal environment research 1239-6095 1797-2469 28 88463 http://hdl.handle.net/10138/566419 URN:NBN:fi-fe20231012139875 |
op_rights | CC BY 4.0 |
publishDate | 2023 |
publisher | Finnish Environment Institute |
record_format | openpolar |
spelling | ftunivhelsihelda:oai:helda.helsinki.fi:10138/566419 2025-01-16T21:20:07+00:00 First total OH reactivity emission measurements from a Nordic wetland Schallhart, Simon Praplan, Arnaud P. Tykkä, Toni Reijrink, Nina Williams, Jonathan Hakola, Hannele Hellén, Heidi Ilmatieteen laitos Finnish Meteorological Institute orcid:0000-0002-1923-6211 orcid:0000-0002-9944-3084 orcid:0000-0002-9711-9053 orcid:0000-0001-7022-3857 2023-10-25T08:36:22Z 97 - 110 application/pdf http://hdl.handle.net/10138/566419 en eng Finnish Environment Institute Boreal environment research 1239-6095 1797-2469 28 88463 http://hdl.handle.net/10138/566419 URN:NBN:fi-fe20231012139875 CC BY 4.0 emissions volatile organic compounds atmosphere (earth) aerosols particles (matter) air impurities and contaminants air pollution air quality measurement reactivity päästöt haihtuvat orgaaniset yhdisteet ilmakehä aerosolit ilman epäpuhtaudet ilman saastuminen ilmanlaatu mittaus reaktiivisuus A1 Alkuperäisartikkeli tieteellisessä aikakauslehdessä A1 Journal article (refereed), original research 2023 ftunivhelsihelda 2024-07-04T04:52:53Z Volatile organic compounds (VOCs) are ever-present compounds in the air we breathe. They are emitted by natural and anthropogenic sources and are modified by atmospheric oxidants. VOCs affect air quality and human health, form and grow aerosol particles, and can impact Earth's radiative balance. Total hydroxyl radical (OH) reactivity measurements are a valuable tool for assessing the comprehensiveness of measured VOCs and can give valuable insights into in situ atmospheric chemistry. Especially in remote forested environments, missing or unaccounted for reactivity has been substantial, caused by either unmeasured primary emissions or secondary oxidation products. This study presents OH reactivity and VOC measurements over a Nordic, subarctic wetland in summer. Over half of the OH reactivity from emissions could not be attributed, while the remaining measured fraction is dominated by isoprene (42%), followed by sesquiterpenes (3%). Article in Journal/Newspaper Boreal Environment Research Subarctic HELDA – University of Helsinki Open Repository |
spellingShingle | emissions volatile organic compounds atmosphere (earth) aerosols particles (matter) air impurities and contaminants air pollution air quality measurement reactivity päästöt haihtuvat orgaaniset yhdisteet ilmakehä aerosolit ilman epäpuhtaudet ilman saastuminen ilmanlaatu mittaus reaktiivisuus Schallhart, Simon Praplan, Arnaud P. Tykkä, Toni Reijrink, Nina Williams, Jonathan Hakola, Hannele Hellén, Heidi First total OH reactivity emission measurements from a Nordic wetland |
title | First total OH reactivity emission measurements from a Nordic wetland |
title_full | First total OH reactivity emission measurements from a Nordic wetland |
title_fullStr | First total OH reactivity emission measurements from a Nordic wetland |
title_full_unstemmed | First total OH reactivity emission measurements from a Nordic wetland |
title_short | First total OH reactivity emission measurements from a Nordic wetland |
title_sort | first total oh reactivity emission measurements from a nordic wetland |
topic | emissions volatile organic compounds atmosphere (earth) aerosols particles (matter) air impurities and contaminants air pollution air quality measurement reactivity päästöt haihtuvat orgaaniset yhdisteet ilmakehä aerosolit ilman epäpuhtaudet ilman saastuminen ilmanlaatu mittaus reaktiivisuus |
topic_facet | emissions volatile organic compounds atmosphere (earth) aerosols particles (matter) air impurities and contaminants air pollution air quality measurement reactivity päästöt haihtuvat orgaaniset yhdisteet ilmakehä aerosolit ilman epäpuhtaudet ilman saastuminen ilmanlaatu mittaus reaktiivisuus |
url | http://hdl.handle.net/10138/566419 |