IJ
IJCRM
International Journal of Contemporary Research in Multidisciplinary
ISSN: 2583-7397
Open Access • Peer Reviewed
Impact Factor: 5.67

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;  

1. Research Scholar, Department of Environmental Science, Bangalore University, Bengaluru, India

2. Professor, Department of Environmental Science, Bangalore University, Bangalore, India

3. Research Scholar, Department of Environmental Science, Bangalore University, Bengaluru, India

4. Research Scholar, Department of Environmental Science, Bangalore University, Bengaluru, India

Paper Type: research paper
Article Information
Paper Received on: 2026-06-01
Paper Accepted on: 2026-07-02
Paper Published on: 2026-07-07
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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