空气质量指数
环境科学
污染物
空气污染
空气污染物标准
气象学
城市规划
风速
空间生态学
城市气候
比例(比率)
市区
梯度升压
空气污染物
地理
计算机科学
地图学
机器学习
土木工程
工程类
生态学
化学
经济
有机化学
随机森林
经济
生物
作者
Firas Gerges,Maider Llaguno-Munitxa,Mark A. Zondlo,Michel C. Boufadel,Elie Bou‐Zeid
标识
DOI:10.1021/acs.est.4c00783
摘要
Urban air quality persists as a global concern, with critical health implications. This study employs a combination of machine learning (gradient boosting regression, GBR) and spatial analysis to better understand the key drivers behind air pollution and its prediction and mitigation strategies. Focusing on New York City as a representative urban area, we investigate the interplay between urban characteristics and weather factors, showing that urban features, including traffic-related parameters and urban morphology, emerge as crucial predictors for pollutants closely associated with vehicular emissions, such as elemental carbon (EC) and nitrogen oxides (NOx). Conversely, pollutants with secondary formation pathways (e.g., PM2.5) or stemming from nontraffic sources (e.g., sulfur dioxide, SO2) are predominantly influenced by meteorological conditions, particularly wind speed and maximum daily temperature. Urban characteristics are shown to act over spatial scales of 500 × 500 m2, which is thus the footprint needed to effectively capture the impact of urban form, fabric, and function. Our spatial predictive model, needing only meteorological and urban inputs, achieves promising results with mean absolute errors ranging from 8 to 32% when using full-year data. Our approach also yields good performance when applied to the temporal mapping of spatial pollutant variability. Our findings highlight the interacting roles of urban characteristics and weather conditions and can inform urban planning, design, and policy.
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