Economic-boom-driven electricity demand linked to urban air pollution and health in India

Abstract Rapid economic growth in India since 2000 has been accompanied by rising electricity demand and worsening urban air pollution. Here we show that a threefold increase in GDP per capita was associated with a nearly fourfold rise in electricity demand, with coal supplying approximately 76% of total generation. This coal-dependent expansion increased energy-sector SO 2 emissions and contributed to a twofold increase in urban aerosol loading, with sulfate accounting for approximately 46% of the urban aerosol burden. Urban PM 2.5 -attributable deaths increased from approximately 0.7 million in 2000 to 0.9 million in 2020, with increasing contributions from power-sector emissions. Meanwhile, rising incomes increased clean-cooking access from approximately 25% to 75%, accompanied by declining household air-pollution deaths but increasing outdoor air-pollution deaths. These findings highlight contrasting indoor and outdoor air-pollution health consequences of coal-dependent economic growth. This underscores the urgency of decarbonizing electricity generation to improve urban air quality and public health as well as maintaining sustainable economic growth.

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Journal
Nature Cities
Published
2026-09-25
DOI
https://doi.org/10.1038/s44284-026-00518-9
Primary Topic
Energy and Environment Impacts
Type
article
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article

Economic-boom-driven electricity demand linked to urban air pollution and health in India

Rui Song, Basudev Swain, Luca Lelli, Pritanjali Shende et al.
Nature Cities
Energy and Environment Impacts
article

Economic-boom-driven electricity demand linked to urban air pollution and health in India

Rui Song, Basudev Swain, Luca Lelli, Pritanjali Shende, Ankit Tandon, Marco Vountas, Aishwarya Singh, Adrien Deroubaix, Chenchen Huang, Debashis Tripathy
article en

Abstract

Abstract Rapid economic growth in India since 2000 has been accompanied by rising electricity demand and worsening urban air pollution. Here we show that a threefold increase in GDP per capita was associated with a nearly fourfold rise in electricity demand, with coal supplying approximately 76% of total generation. This coal-dependent expansion increased energy-sector SO 2 emissions and contributed to a twofold increase in urban aerosol loading, with sulfate accounting for approximately 46% of the urban aerosol burden. Urban PM 2.5 -attributable deaths increased from approximately 0.7 million in 2000 to 0.9 million in 2020, with increasing contributions from power-sector emissions. Meanwhile, rising incomes increased clean-cooking access from approximately 25% to 75%, accompanied by declining household air-pollution deaths but increasing outdoor air-pollution deaths. These findings highlight contrasting indoor and outdoor air-pollution health consequences of coal-dependent economic growth. This underscores the urgency of decarbonizing electricity generation to improve urban air quality and public health as well as maintaining sustainable economic growth.

Nature Cities
University of Jammu (IN), University of Bremen (DE), University of Cambridge (GB), Deutsches Zentrum für Luft- und Raumfahrt e. V. (DLR) (DE), Max Planck Institute for Chemistry (DE), Central University of Jammu (IN), Max Planck Institute for Meteorology (DE), University of Bath (GB), Indian Institute of Technology Hyderabad (IN)
Openalex Percentile: Top 22%
Energy and Environment Impacts
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