Abstract
Urban land-cover patterns play a key role in shaping air pollution within cities. However, most research has focused on city- and street-level analysis, leaving a knowledge gap regarding the influence of land-cover patterns on air pollution at the neighborhood scale. In this study, we examine how the composition and configuration of vegetated and non-vegetated land covers relate to wintertime PM2.5 concentrations across four residential neighborhoods in Santiago, Chile. We combined observations from a dense network of 55 low-cost air quality sensors with high-resolution land-cover data to quantify compositional and configurational land-cover characteristics within concentric buffers ranging from 30 to 480 m around each sensor. Linear mixed-effects models were used to assess scale-dependent relationships across different PM2.5 concentration levels. Built-up cover showed a consistent positive association with PM2.5, while seasonal soil and deciduous tree cover were negatively associated with PM2.5 concentrations. These relationships strengthened during high-pollution periods and varied with the spatial scale of analysis. Configurational metrics, particularly the size and aggregation of land-cover patches, were also influential in explaining intra-neighborhood variability in PM2.5. In contrast, grass and evergreen tree cover showed no significant associations across metrics, scales, or pollution levels. Although the effects of individual land-cover patterns were moderate, our findings demonstrate that neighborhood-scale air quality is shaped by interacting effects of land-cover composition, configuration, pollution concentration, and scale. Managing the spatial dominance of built-up land and preserving larger patches of seasonal soil may contribute to reducing neighborhood-scale winter PM2.5 concentrations in highly urbanized cities such as Santiago.
| Original language | English |
|---|---|
| Article number | 102931 |
| Journal | Urban Climate |
| Volume | 67 |
| DOIs | |
| State | Published - Jun 2026 |
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
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SDG 11 Sustainable Cities and Communities
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SDG 15 Life on Land
Keywords
- Air quality sensors
- Ecosystem services
- Particulate matter
- Spatial patterns
- Urban vegetation
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