Literature DB >> 25701812

Indoor particulate matter in rural, wood stove heated homes.

Erin O Semmens1, Curtis W Noonan2, Ryan W Allen3, Emily C Weiler4, Tony J Ward5.   

Abstract

Ambient particulate matter (PM) exposures have adverse impacts on public health, but research evaluating indoor PM concentrations in rural homes in the United States using wood as fuel for heating is limited. Our objectives were to characterize indoor PM mass and particle number concentrations (PNCs), quantify infiltration of outdoor PM into the indoor environment, and investigate potential predictors of concentrations and infiltration in 96 homes in the northwestern US and Alaska using wood stoves as the primary source of heating. During two forty-eight hour sampling periods during the pre-intervention winter of a randomized trial, we assessed PM mass (<2.5μm) and PNCs (particles/cm(3)) in six size fractions (0.30-0.49, 0.50-0.99, 1.00-2.49, 2.5-5.0, 5.0-10.0, 10.0+μm). Daily mean (sd) PM2.5 concentrations were 28.8 (28.5)μg/m(3) during the first sampling period and 29.1 (30.1)μg/m(3) during the second period. In repeated measures analyses, household income was inversely associated with PM2.5 and smaller size fraction PNCs, in particular. Time of day was a significant predictor of indoor and outdoor PM2.5 concentrations, and infiltration efficiency was relatively low (Finf (sd)=0.27 (0.20)). Our findings demonstrate relatively high mean PM concentrations in these wood burning homes and suggest potential targets for interventions for improving indoor air quality and health in rural settings.
Copyright © 2015 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Biomass combustion; Indoor air quality; Infiltration efficiency; Particulate matter; Wood stove

Mesh:

Substances:

Year:  2015        PMID: 25701812      PMCID: PMC4385435          DOI: 10.1016/j.envres.2015.02.005

Source DB:  PubMed          Journal:  Environ Res        ISSN: 0013-9351            Impact factor:   6.498


  20 in total

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3.  Use of real-time light scattering data to estimate the contribution of infiltrated and indoor-generated particles to indoor air.

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4.  Evaluation of the recursive model approach for estimating particulate matter infiltration efficiencies using continuous light scattering data.

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6.  Residential indoor PM2.5 in wood stove homes: follow-up of the Libby changeout program.

Authors:  C W Noonan; W Navidi; L Sheppard; C P Palmer; M Bergauff; K Hooper; T J Ward
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7.  Estimated hourly personal exposures to ambient and nonambient particulate matter among sensitive populations in Seattle, Washington.

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8.  Coarse particulate matter and airborne endotoxin within wood stove homes.

Authors:  M McNamara; J Thornburg; E Semmens; T Ward; C Noonan
Journal:  Indoor Air       Date:  2013-04-18       Impact factor: 5.770

9.  Modeling the residential infiltration of outdoor PM(2.5) in the Multi-Ethnic Study of Atherosclerosis and Air Pollution (MESA Air).

Authors:  Ryan W Allen; Sara D Adar; Ed Avol; Martin Cohen; Cynthia L Curl; Timothy Larson; L-J Sally Liu; Lianne Sheppard; Joel D Kaufman
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10.  Health and household air pollution from solid fuel use: the need for improved exposure assessment.

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3.  Efficacy of interventions targeting household air pollution from residential wood stoves.

Authors:  Tony J Ward; Erin O Semmens; Emily Weiler; Solomon Harrar; Curtis W Noonan
Journal:  J Expo Sci Environ Epidemiol       Date:  2015-11-11       Impact factor: 5.563

4.  Indoor fine particulate matter and demographic, household, and wood stove characteristics among rural US homes heated with wood fuel.

Authors:  Ethan S Walker; Curtis W Noonan; Erin O Semmens; Desirae Ware; Paul Smith; Bert B Boyer; Esther Erdei; Scarlett E Hopkins; Johnnye Lewis; Annie Belcourt; Tony J Ward
Journal:  Indoor Air       Date:  2021-02-23       Impact factor: 6.554

5.  Particulate Matter 2.5 Exposure and Self-Reported Use of Wood Stoves and Other Indoor Combustion Sources in Urban Nonsmoking Homes in Norway.

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Journal:  PLoS One       Date:  2016-11-17       Impact factor: 3.240

6.  Dietary intake is associated with respiratory health outcomes and DNA methylation in children with asthma.

Authors:  L Montrose; T J Ward; E O Semmens; Y H Cho; B Brown; C W Noonan
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7.  Randomized Trial of Interventions to Improve Childhood Asthma in Homes with Wood-burning Stoves.

Authors:  Curtis W Noonan; Erin O Semmens; Paul Smith; Solomon W Harrar; Luke Montrose; Emily Weiler; Marcy McNamara; Tony J Ward
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8.  Efficacy of Air Filtration and Education Interventions on Indoor Fine Particulate Matter and Child Lower Respiratory Tract Infections among Rural U.S. Homes Heated with Wood Stoves: Results from the KidsAIR Randomized Trial.

Authors:  Ethan S Walker; Erin O Semmens; Annie Belcourt; Bert B Boyer; Esther Erdei; Jon Graham; Scarlett E Hopkins; Johnnye L Lewis; Paul G Smith; Desirae Ware; Emily Weiler; Tony J Ward; Curtis W Noonan
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Review 9.  When physical activity meets the physical environment: precision health insights from the intersection.

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10.  Impact of home remediation and household education on indoor air quality, respiratory visits and symptoms in Alaska Native children.

Authors:  Rosalyn Singleton; Aaron J Salkoski; Lisa Bulkow; Chris Fish; Jennifer Dobson; Leif Albertson; Jennifer Skarada; Troy Ritter; Thomas Kovesi; Thomas W Hennessy
Journal:  Int J Circumpolar Health       Date:  2018-12       Impact factor: 1.228

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