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Olanrewaju B. Fayemi

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Open access Aug 2026

Assessment of PM₂.₅ related health impacts along a major traffic corridor in Lagos using the WHO AirQ⁺ model

Air pollution from fine particulate matter (PM₂.₅) poses a significant environmental health challenge in rapidly urbanizing African cities. Lagos, Nigeria, experiences severe traffic congestion and elevated ambient PM₂.₅ concentrations, yet localized estimates of associated health impacts remain limited. This study applies the World Health Organization’s AirQ⁺ model to quantify mortality attributable to PM₂.₅ exposure along the Ikeja traffic corridor, a representative high-traffic urban environment. Ambient PM₂.₅ concentrations were monitored using a high-resolution SNAQ sensor over four months (November 2018–February 2019), yielding a mean concentration of 73.75 µg/m3 and peaks exceeding 123 µg/m3. Population data for Ikeja (≈475,000 residents) and cause-specific mortality rates from the Institute for Health Metrics and national statistics were used as model inputs. Using the study-period mean concentration, AirQ⁺ estimated that acute lower respiratory infections (ALRI) accounted for the largest number of attributable deaths over the four-month period (4,131; 520 per 100,000 population), while lung cancer (54.1%) and ischemic heart disease (50.8%) showed the highest attributable fractions. Weekly and monthly analyses revealed that even modest fluctuations in PM₂.₅ levels could meaningfully influence respiratory and cardiovascular mortality. Scenario analysis indicates that a 10% reduction in PM₂.₅ concentrations could prevent more than 1,400 premature deaths, highlighting the potential health benefits of targeted emission control and traffic management strategies. These findings underscore the substantial burden of traffic-related PM₂.₅ exposure in Lagos and provide critical evidence to guide urban air quality interventions and public health policy in rapidly developing African megacities.

O. A. Babatunde, Olanrewaju B. Fayemi, L. Sunmonu et al. · 0 citations