Monitoring of NO2 air pollution in the port of Livorno and spatialization of data

IF 2.9 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES Air Quality Atmosphere and Health Pub Date : 2024-02-26 DOI:10.1007/s11869-024-01533-2
Chiara Collaveri, Bianca Patrizia Andreini, Elisa Bini, Luca Borin, Fiammetta Dini, Stefano Fortunato, Camilla Grossi, Marina Rosato, Bianca Sivieri
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Abstract

In this work, an estimate of the spatial distribution of NO2 is presented starting from data measured with passive samplers in 10 locations in the municipality of Livorno in Tuscany (Italy). The data from the passive samplers were integrated with measurement campaigns carried out within the port of Livorno and with data from the fixed stations. The Municipality of Livorno is subject to pressures deriving from the emissions of the port, the heavy industry and the demographic activity (traffic and heating) of a municipality with middle/high population density (270 inhabitants/km2) for Tuscany Region. Despite the many and varied pressures, the only exceedances of the air quality limit values ​​in the last decade concerned the annual average of nitrogen oxides in the urban traffic station. However, the port makes an important contribution in terms of emissions to nitrogen oxides, therefore the main objective of this work is to represent the NO2 levels in the urban area of ​​Livorno, highlighting the various contributions. To do this, Ordinary Kriging was carried out on the measured values ​​after removing the local trend through the use of a beta index, a method reported in the literature for Belgian network and also applied in Italy for spatial representativeness. In this work we also tried to best represent the contribution of traffic as in our data set there is a urban traffic station, with the highest NO2 levels in Tuscany, lower only than those in the regional capital Firenze. With a very simplified method, that can be improved in future works, it was possible to estimate the effects of the port on the city in comparison with the other sources, treating the background levels separately and stratifying the levels of road traffic based on the flows of the main roads.

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监测里窝那港的二氧化氮空气污染和数据空间化
摘要 在这项工作中,根据被动采样器在托斯卡纳(意大利)利沃诺市 10 个地点测量的数据,对二氧化氮的空间分布进行了估计。被动采样器的数据与里窝那港内进行的测量活动以及固定站点的数据进行了整合。里窝那市受到港口排放、重工业和人口活动(交通和供暖)的压力,该市的人口密度在托斯卡纳大区属于中/高水平(270 人/平方公里)。尽管面临多种多样的压力,但在过去十年中,只有城市交通站的氮氧化物年平均值超过了空气质量限值。然而,港口在氮氧化物排放方面做出了重要贡献,因此这项工作的主要目标是反映里窝那市区的二氧化氮水平,突出各种贡献。为此,我们对测量值进行了普通克里金法(Ordinary Kriging)处理,通过使用贝塔指数去除局部趋势。在这项工作中,我们还试图最好地体现交通的贡献,因为在我们的数据集中有一个城市交通站,其二氧化氮水平在托斯卡纳最高,仅低于该地区首府佛罗伦萨。通过一种非常简单的方法(可在今后的工作中加以改进),我们可以估算出港口与其他来源相比对城市的影响,将背景水平分开处理,并根据主要道路的流量对道路交通水平进行分层。
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来源期刊
Air Quality Atmosphere and Health
Air Quality Atmosphere and Health ENVIRONMENTAL SCIENCES-
CiteScore
8.80
自引率
2.00%
发文量
146
审稿时长
>12 weeks
期刊介绍: Air Quality, Atmosphere, and Health is a multidisciplinary journal which, by its very name, illustrates the broad range of work it publishes and which focuses on atmospheric consequences of human activities and their implications for human and ecological health. It offers research papers, critical literature reviews and commentaries, as well as special issues devoted to topical subjects or themes. International in scope, the journal presents papers that inform and stimulate a global readership, as the topic addressed are global in their import. Consequently, we do not encourage submission of papers involving local data that relate to local problems. Unless they demonstrate wide applicability, these are better submitted to national or regional journals. Air Quality, Atmosphere & Health addresses such topics as acid precipitation; airborne particulate matter; air quality monitoring and management; exposure assessment; risk assessment; indoor air quality; atmospheric chemistry; atmospheric modeling and prediction; air pollution climatology; climate change and air quality; air pollution measurement; atmospheric impact assessment; forest-fire emissions; atmospheric science; greenhouse gases; health and ecological effects; clean air technology; regional and global change and satellite measurements. This journal benefits a diverse audience of researchers, public health officials and policy makers addressing problems that call for solutions based in evidence from atmospheric and exposure assessment scientists, epidemiologists, and risk assessors. Publication in the journal affords the opportunity to reach beyond defined disciplinary niches to this broader readership.
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