Living Conditions in Timber Houses: Emission Trends and Indoor Air Quality

Indoor air quality (IAQ) was investigated in 13 newly-built, occupied timber houses on a long-term basis. The study included a comparison of the construction types timber-frame (TF) and solid wood (SF), in addition two different ventilation types, controlled vs. window ventilation, were contrasted....

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Main Authors: Christina Fürhapper, Elisabeth Habla, Daniel Stratev, Martin Weigl, Karl Dobianer
Format: Article
Language:English
Published: Frontiers Media S.A. 2020-01-01
Series:Frontiers in Built Environment
Subjects:
Online Access:https://www.frontiersin.org/article/10.3389/fbuil.2019.00151/full
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spelling doaj-582ffc8390ad4aa8bb7ce9b76001c96c2020-11-25T01:19:54ZengFrontiers Media S.A.Frontiers in Built Environment2297-33622020-01-01510.3389/fbuil.2019.00151460030Living Conditions in Timber Houses: Emission Trends and Indoor Air QualityChristina Fürhapper0Elisabeth Habla1Daniel Stratev2Martin Weigl3Karl Dobianer4Holzforschung Austria, Bioenergy and Analytical Chemistry, Vienna, AustriaHolzforschung Austria, Bioenergy and Analytical Chemistry, Vienna, AustriaHolzforschung Austria, Bioenergy and Analytical Chemistry, Vienna, AustriaHolzforschung Austria, Bioenergy and Analytical Chemistry, Vienna, AustriaTechnisches Büro Für Chemie – Dr. Karl Dobianer, Vienna, AustriaIndoor air quality (IAQ) was investigated in 13 newly-built, occupied timber houses on a long-term basis. The study included a comparison of the construction types timber-frame (TF) and solid wood (SF), in addition two different ventilation types, controlled vs. window ventilation, were contrasted. The emission progression of volatile organic compounds (VOCs) including formaldehyde, was recorded and compared with the subjective well-being of the residents, which was identified by use of standardized questionnaires. This was completed with toxicological assessment and repeated measurements of specific medical parameters of health indicative character. It was found that VOC-emissions were initially elevated regardless of construction and ventilation type. However, after a period of up to 8 months emissions mostly decreased to an average level. Whereas, the SW constructions released distinctly more terpenes compared to the TF houses, there was no significant difference regarding the total concentration of emitted VOCs. The use of controlled ventilation systems resulted in lower VOC-concentrations and thus in higher IAQ compared to window ventilation. From a toxicological point of view the major part of the investigated houses were unobtrusive and IAQ was considered as “high” or “satisfactory.” Residents were continuously very satisfied with their health and quality of life. This perception was confirmed by the results gained from the accompanying medical examinations, giving no indication for physical impairments.https://www.frontiersin.org/article/10.3389/fbuil.2019.00151/fullindoor air qualitytimber constructionsliving comfortlong-term emissionstoxicological assessment
collection DOAJ
language English
format Article
sources DOAJ
author Christina Fürhapper
Elisabeth Habla
Daniel Stratev
Martin Weigl
Karl Dobianer
spellingShingle Christina Fürhapper
Elisabeth Habla
Daniel Stratev
Martin Weigl
Karl Dobianer
Living Conditions in Timber Houses: Emission Trends and Indoor Air Quality
Frontiers in Built Environment
indoor air quality
timber constructions
living comfort
long-term emissions
toxicological assessment
author_facet Christina Fürhapper
Elisabeth Habla
Daniel Stratev
Martin Weigl
Karl Dobianer
author_sort Christina Fürhapper
title Living Conditions in Timber Houses: Emission Trends and Indoor Air Quality
title_short Living Conditions in Timber Houses: Emission Trends and Indoor Air Quality
title_full Living Conditions in Timber Houses: Emission Trends and Indoor Air Quality
title_fullStr Living Conditions in Timber Houses: Emission Trends and Indoor Air Quality
title_full_unstemmed Living Conditions in Timber Houses: Emission Trends and Indoor Air Quality
title_sort living conditions in timber houses: emission trends and indoor air quality
publisher Frontiers Media S.A.
series Frontiers in Built Environment
issn 2297-3362
publishDate 2020-01-01
description Indoor air quality (IAQ) was investigated in 13 newly-built, occupied timber houses on a long-term basis. The study included a comparison of the construction types timber-frame (TF) and solid wood (SF), in addition two different ventilation types, controlled vs. window ventilation, were contrasted. The emission progression of volatile organic compounds (VOCs) including formaldehyde, was recorded and compared with the subjective well-being of the residents, which was identified by use of standardized questionnaires. This was completed with toxicological assessment and repeated measurements of specific medical parameters of health indicative character. It was found that VOC-emissions were initially elevated regardless of construction and ventilation type. However, after a period of up to 8 months emissions mostly decreased to an average level. Whereas, the SW constructions released distinctly more terpenes compared to the TF houses, there was no significant difference regarding the total concentration of emitted VOCs. The use of controlled ventilation systems resulted in lower VOC-concentrations and thus in higher IAQ compared to window ventilation. From a toxicological point of view the major part of the investigated houses were unobtrusive and IAQ was considered as “high” or “satisfactory.” Residents were continuously very satisfied with their health and quality of life. This perception was confirmed by the results gained from the accompanying medical examinations, giving no indication for physical impairments.
topic indoor air quality
timber constructions
living comfort
long-term emissions
toxicological assessment
url https://www.frontiersin.org/article/10.3389/fbuil.2019.00151/full
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AT elisabethhabla livingconditionsintimberhousesemissiontrendsandindoorairquality
AT danielstratev livingconditionsintimberhousesemissiontrendsandindoorairquality
AT martinweigl livingconditionsintimberhousesemissiontrendsandindoorairquality
AT karldobianer livingconditionsintimberhousesemissiontrendsandindoorairquality
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