International Journal of Contemporary Research In Multidisciplinary, 2026;5(4):68-75
Urban Air Quality Matrix: Spatiotemporal Heterogeneity and Source Diagnostics in Bengaluru
Author Name: Vivek Amuthan S; K L Prakash; Sharanya S V; Vishnu H V;
Paper Type: research paper
Article Information
Abstract:
Rapid urbanisation in tropical megacities has engendered complex atmospheric regimes characterised by extreme spatiotemporal heterogeneity. This study presents a comprehensive statistical characterisation of the ambient air quality matrix in Bengaluru, India (2018–2024), leveraging a high-density network of 13 Continuous Ambient Air Quality Monitoring Stations (CAAQMS). Moving beyond aggregate compliance metrics, this study employs an integrated statistical framework using the Mann-Kendall trend test, Coefficient of Divergence (COD), and Multi-Dimensional Scaling (MDS). Results indicate a 'fractured airshed' (defined as a domain exhibiting high spatial heterogeneity, COD > 0.20): the industrial node (Peenya) recorded a statistically significant decline in PM2.5 (Sen’s Slope: −2.75 μg/m³/year), contrasting with a statistically significant increased trend of Ammonia (NH₃) in residential zones (+1.44 μg/m³/year). Spatial analysis revealed a high Coefficient of Divergence (COD = 0.42) between industrial and residential zones, refuting the hypothesis of a homogenous urban airshed. Further, source diagnostics quantified a weekend effect with an 18.4% reduction in NO₂ (p < 0.01), isolating the vehicular contribution to the pollution burden. These findings underscore the critical need for a Zonal Air Quality Management (ZAQM) framework.
Keywords:
Urban Air Quality; Coefficient of Divergence; Mann-Kendall Trend; Source Apportionment; Bengaluru.
How to Cite this Article:
Vivek Amuthan S,K L Prakash,Sharanya S V,Vishnu H V. Urban Air Quality Matrix: Spatiotemporal Heterogeneity and Source Diagnostics in Bengaluru. International Journal of Contemporary Research in Multidisciplinary. 2026: 5(4):68-75
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