Characteristics of Indoor PM 2.5 Concentration in Gers Using Coal Stoves in Ulaanbaatar, Mongolia

Coal combustion in ger areas is the main source of ambient air pollution in Ulaanbaatar (Mongolia). This study determined the characteristics of indoor PM concentrations in gers using coal stoves during winter. The study population consisted of 60 gers in the Chingeltei district of Ulaanbaatar. The...

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Published inInternational journal of environmental research and public health Vol. 15; no. 11
Main Authors Lim, Miyoung, Myagmarchuluun, Sainnyambuu, Ban, Hyunkyung, Hwang, Yunhyung, Ochir, Chimedsuren, Lodoisamba, Delgerzul, Lee, Kiyoung
Format Journal Article
LanguageEnglish
Published Switzerland 12.11.2018
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Abstract Coal combustion in ger areas is the main source of ambient air pollution in Ulaanbaatar (Mongolia). This study determined the characteristics of indoor PM concentrations in gers using coal stoves during winter. The study population consisted of 60 gers in the Chingeltei district of Ulaanbaatar. The indoor particle number concentration (PNC) in each ger was measured using a Dylos DC1700 particle counter for 24 h in January and February 2016. The PNC by Dylos was converted into the mass concentration using a calibration equation developed using a collocated real-time light scattering monitor adjusted by gravimetric measurement. The average 24 h PM concentration was 203.9 ± 195.1 μg/m³ in gers with traditional stoves ( = 29) and 257.5 ± 204.4 μg/m³ in those with improved stoves ( = 31). In the daily profile, concentrations were lower at night, increased in the early morning, and peaked up to noon. The temperature in gers was slightly higher than that recommended in winter. Many development-assistance programs have supported the installation of improved energy-efficient stoves. Better control measures are needed to improve the indoor air quality of gers.
AbstractList Coal combustion in ger areas is the main source of ambient air pollution in Ulaanbaatar (Mongolia). This study determined the characteristics of indoor PM concentrations in gers using coal stoves during winter. The study population consisted of 60 gers in the Chingeltei district of Ulaanbaatar. The indoor particle number concentration (PNC) in each ger was measured using a Dylos DC1700 particle counter for 24 h in January and February 2016. The PNC by Dylos was converted into the mass concentration using a calibration equation developed using a collocated real-time light scattering monitor adjusted by gravimetric measurement. The average 24 h PM concentration was 203.9 ± 195.1 μg/m³ in gers with traditional stoves ( = 29) and 257.5 ± 204.4 μg/m³ in those with improved stoves ( = 31). In the daily profile, concentrations were lower at night, increased in the early morning, and peaked up to noon. The temperature in gers was slightly higher than that recommended in winter. Many development-assistance programs have supported the installation of improved energy-efficient stoves. Better control measures are needed to improve the indoor air quality of gers.
Author Myagmarchuluun, Sainnyambuu
Hwang, Yunhyung
Lim, Miyoung
Lodoisamba, Delgerzul
Ochir, Chimedsuren
Lee, Kiyoung
Ban, Hyunkyung
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  organization: Department of Environmental Health, School of Public Health, Mongolian National University of Medical Sciences, Ulaanbaatar 14210, Mongolia. myagmarchuluun@mnums.edu.mn
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  givenname: Delgerzul
  surname: Lodoisamba
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  email: cleanair@snu.ac.kr, cleanair@snu.ac.kr
  organization: Institute of Health and Environment, Seoul National University, Seoul 08826, Korea. cleanair@snu.ac.kr
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Issue 11
Keywords indoor air quality
coal combustion
ger
PM2.5
indoor stove
Language English
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