Series: Working Papers. 2621.
Author: Nicolás Forteza and José M. Labeaga
European Union
- Regional analysis
- Climate change and green transition
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Abstract
Low emission zones (LEZs) have emerged as a primary policy instrument to combat urban air pollution in Europe, yet rigorous evidence on their effectiveness and spatial spillovers remains limited. Using a high-resolution geospatial panel dataset covering 1km grid cells across 33 European countries from 2007 to 2022, we estimate that LEZ adoption reduces PM2.5 exposure by approximately 4% within designated zones. We find robust evidence of positive spillovers: pollution also declines in areas adjacent to LEZ boundaries. These average effects mask substantial heterogeneity: reductions are concentrated in larger, denser cities and in cities with medium-sized zones relative to total urban area, while the smallest cities and zones show no detectable effect. These findings suggest LEZs generate city-wide environmental benefits extending beyond formal boundaries, consistent with network effects and technology spillovers dominating displacement mechanisms. To contextualize these results, we estimate the pollution-density elasticity for European cities using instrumental variables based on historical settlement patterns, finding that a 1% increase in population density raises PM2.5 exposure by 6% (approximately half the magnitude documented for US cities). We interpret our findings through a spatial equilibrium model that formalizes how LEZs alter the pollution production function in monocentric cities. Our results indicate that moderate-stringency LEZs, as typically implemented across Europe, deliver meaningful aggregate pollution reductions of approximately 1.8% city-wide, with modal shift complementarities and fleet renewal mechanisms dominating traffic displacement effects.