Journal Article
Published 2026
Ambient Air Quality Assessment in Blantyre Malawi Using Low-Cost Sensors
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Prof. Harold Wilson Tumwitike Mapoma
Co-author
Physics & Biochemical Sciences
34 total publications
Besides teaching and consultancy, Prof. H.W.T. Mapoma has a great passion for research and skills gathering in Environmental Science and Sanitation. He has more than 10 years of teaching experience in environmental pollution and management, water res...
UN Sustainable Development Goals
Global Impact
Research Fields & Tags
Primary Author
Assoc. Prof. Chikumbutso Chiziwa Kaonga
Co-Authors
Mr. Fabiano Thulu, Gunseyo Dickson Dzinjalamala, Mrs. Upile Mawenda, Ms. Gladys C Banda, Darlington Chimutu, Ms. Stella James, Kingsley Kabango, Petra Chiipa, Dr. Estiner Katengeza, Tawina Mlowa, Prof. Ishmael Bobby Kosamu
Abstract
This study presents an assessment of ambient air quality in Chichiri and Malawi University of Business and Applied Sciences (MUBAS) locations, Blantyre City, Southern Malawi. The study aimed at assessing temporal trends, identifying exceedance of thresholds, investigating relationships between pollutants and meteorological factors, and exploring the predictability of air quality index (AQI). Five pollutants: PM2.5
, PM10
, NOx
, CO2
and TVOC were assessed over a two-month period using fixed low-cost sensors. Daily and hourly temporal analysis showed that pollutants peak during morning and evening hours. A significant number of exceedances for PM2.5
and PM10
were observed when compared to indicative thresholds. Chichiri exhibited more frequent AQI classifications in the “unhealthy” range. A strong positive relationship between PM2.5
and PM10
(r =
0.84) and positive correlations between NOx
and CO2
were observed. A multiple linear regression model achieved a high coefficient of determination (R2
=
0.938), identifying PM10
and NOx
as dominant predictors of AQI variability. Temperature and humidity showed modest inverse relationship with AQI, suggesting dispersion effects. A comparison with African cities showed that the study areas’ pollution levels were within regional norms, but that there is a need for targeted mitigation. These findings underscore the importance of continuous monitoring, data-driven policy making and regional collaboration to address urban air quality challenges.
, PM10
, NOx
, CO2
and TVOC were assessed over a two-month period using fixed low-cost sensors. Daily and hourly temporal analysis showed that pollutants peak during morning and evening hours. A significant number of exceedances for PM2.5
and PM10
were observed when compared to indicative thresholds. Chichiri exhibited more frequent AQI classifications in the “unhealthy” range. A strong positive relationship between PM2.5
and PM10
(r =
0.84) and positive correlations between NOx
and CO2
were observed. A multiple linear regression model achieved a high coefficient of determination (R2
=
0.938), identifying PM10
and NOx
as dominant predictors of AQI variability. Temperature and humidity showed modest inverse relationship with AQI, suggesting dispersion effects. A comparison with African cities showed that the study areas’ pollution levels were within regional norms, but that there is a need for targeted mitigation. These findings underscore the importance of continuous monitoring, data-driven policy making and regional collaboration to address urban air quality challenges.
Year of Publication
2026
External Digital Object URL
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Journal Name
Air
Volume
4
Issue
2
Page Numbers
1 - 20
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