Author
Listed:
- Sutyajeet I. Soneja
(Johns Hopkins University, Department of Environmental Health Sciences, Bloomberg School of Public Health)
- James M. Tielsch
(George Washington University, Department of Global Health, Milken School of Public Health and Health Services)
- Subarna K. Khatry
(Nepal Nutrition Intervention Project Sarlahi)
- Benjamin Zaitchik
(Johns Hopkins University, Department of Earth and Planetary Sciences)
- Frank C. Curriero
(Johns Hopkins University, Department of Epidemiology, Bloomberg School of Public Health)
- Patrick N. Breysse
(Johns Hopkins University, Department of Environmental Health Sciences, Bloomberg School of Public Health)
Abstract
Alternative stoves are an intervention option to reduce household air pollution. The amount of air pollution exiting homes when alternative stoves are utilized is not known. In this paper, particulate matter exfiltration estimates are presented for four types of alternative stoves within a village-like home, which was built to reflect the use of local materials and common size, in rural Nepal. Four alternative stoves with chimneys were examined, which included an alternative mud brick stove, original Envirofit G3355 model, manufacture altered Envirofit G3355, and locally altered Envirofit G3355. Multiple linear regression was utilized to determine estimates of PM2.5 exfiltration. Overall exfiltration fraction average (converted to a percent) for the four stoves were: alternative mud brick stove with chimney 56%, original Envirofit G3355 model with chimney 87%, manufacture altered Envirofit G3355 model with chimney 69%, and locally altered Envirofit G3355 model with chimney 69%. Alternative cookstoves resulted in higher overall average exfiltration due to direct and indirect ventilation relative to traditional, mud-based stoves. This contrast emphasizes the need for an improved understanding of the climate and health implications that are believed to come from implementing alternative stoves on a large scale and the resultant shift of exposure burden from indoors to outdoors.
Suggested Citation
Sutyajeet I. Soneja & James M. Tielsch & Subarna K. Khatry & Benjamin Zaitchik & Frank C. Curriero & Patrick N. Breysse, 2017.
"Characterizing Particulate Matter Exfiltration Estimates for Alternative Cookstoves in a Village-Like Household in Rural Nepal,"
Environmental Management, Springer, vol. 60(5), pages 797-808, November.
Handle:
RePEc:spr:envman:v:60:y:2017:i:5:d:10.1007_s00267-017-0915-3
DOI: 10.1007/s00267-017-0915-3
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