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http://hdl.handle.net/1893/36002
Appears in Collections: | Faculty of Health Sciences and Sport Journal Articles |
Peer Review Status: | Refereed |
Title: | Household carbon monoxide (CO) concentrations in a large African city: An unquantified public health burden? |
Author(s): | Orina, F Amukoye, E Bowyer, C Chakaya, J Das, D Devereux, G Dobson, R Dragosits, U Gray, C Kiplimo, R Lesosky, M Loh, M Meme, H Price, H Semple, S |
Contact Email: | heather.price@stir.ac.uk |
Keywords: | Household air pollution Ambient air pollution Human exposure |
Issue Date: | 15-Jun-2024 |
Date Deposited: | 7-May-2024 |
Citation: | Orina F, Amukoye E, Bowyer C, Chakaya J, Das D, Devereux G, Dobson R, Dragosits U, Gray C, Kiplimo R, Lesosky M, Loh M, Meme H, Price H & Semple S (2024) Household carbon monoxide (CO) concentrations in a large African city: An unquantified public health burden?. <i>Environmental Pollution</i>, 351, Art. No.: 124054. https://doi.org/10.1016/j.envpol.2024.124054 |
Abstract: | Carbon monoxide (CO) is a poisonous gas produced by incomplete combustion of carbon-based fuels that is linked to mortality and morbidity. Household air pollution from burning fuels on poorly ventilated stoves can lead to high concentrations of CO in homes. There are few datasets available on household concentrations of CO in urban areas of sub-Saharan African countries. CO was measured every minute over 24 h in a sample of homes in Nairobi, Kenya. Data on household characteristics were gathered by questionnaire. Metrics of exposure were summarised and analysis of temporal changes in concentration was performed. Continuous 24-h data were available from 138 homes. The mean (SD), median (IQR) and maximum 24-h CO concentration was 4.9 (6.4), 2.8 (1.0–6.3) and 44 ppm, respectively. 50% of homes had detectable CO concentrations for 847 min (14h07m) or longer during the 24-h period, and 9% of homes would have activated a CO-alarm operating to European specifications. An association between a metric of total CO exposure and self-reported exposure to vapours >15 h per week was identified, however this were not statistically significant after adjustment for the multiple comparisons performed. Mean concentrations were broadly similar in homes from a more affluent area and an informal settlement. A model of typical exposure suggests that cooking is likely to be responsible for approximately 60% of the CO exposure of Nairobi schoolchildren. Household CO concentrations are substantial in Nairobi, Kenya, despite most homes using gas or liquid fuels. Concentrations tend to be highest during the evening, probably associated with periods of cooking. Household air pollution from cooking is the main source of CO exposure of Nairobi schoolchildren. The public health impacts of long-term CO exposure in cities in sub-Saharan Africa may be considerable and should be studied further. |
DOI Link: | 10.1016/j.envpol.2024.124054 |
Rights: | This is an open access article distributed under the terms of the Creative Commons CC-BY license, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. You are not required to obtain permission to reuse this article. To request permission for a type of use not listed, please contact Elsevier Global Rights Department. |
Notes: | Additional authors: K Mortimer, A Ndombi, C Pearson, M Twigg, S West |
Licence URL(s): | http://creativecommons.org/licenses/by/4.0/ |
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