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首页> 外文期刊>The Science of the Total Environment >Characterisation of atmospheric pollution near an industrial site with a biogas production and combustion plant in southern Italy
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Characterisation of atmospheric pollution near an industrial site with a biogas production and combustion plant in southern Italy

机译:在意大利南部设有沼气生产和燃烧厂的工业区附近的大气污染特征

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摘要

Although biogas production can have some benefits, there is a research gap on potential influence of biogas plant emissions on local air quality, thus an accurate and comprehensive evaluation of impacts of this technology is needed. This study deals with this issue by means of a characterisation of air pollution near an industrial area including a biogas production (from biomass) and combustion plant located in South Italy. The methodology consists in advanced statistical analysis on concentration of gaseous pollutants, particles concentration and size distribution in number and mass, and PM_(2.5) chemical composition. High-temporal resolution measurements, supported by ancillary meteorological parameters, and source apportionment of PM_(2.5) using Positive Matrix Factorization (PMF) receptor model, are performed. The integrated approach provides the emissive picture consisting in different anthropogenic sources (i.e. traffic, biomass burning, and industrial facilities) with particular focus on biogas plant emissions. Results showed that CO and nitrogen oxides were influenced by vehicular traffic and biomass combustion, however, a contribution of the plant to NO was observed. SO_2 was influenced mainly by transport from the industrial zone, but a second local contribution compatible with the emissions of the biogas plant was detected. Number particle concentrations were analysed in four size ranges: nanoparticles (D < 0.05 μm), ultrafine particles (D < 0.3 μm), accumulation (0.3 < D < 1 μm) and coarse particles (D > 1 μm). Nanoparticles and ultrafine particles were mainly influenced by vehicular traffic and biomass burning, instead, a contribution of the plant was individuated in the accumulation mode. PMF5 identified the contribution of six sources: crustal (14.7% ± 2.1% of measured PM_(2.5)); marine aerosol (aged) (12.9% ± 2.3%); biomass burning (32.8% ± 1.4%); secondary sulphate (19.7% ± 2.4%); primary industrial emissions (5.4% ± 23%); traffic and sec-ondary nitrate (17.0% ± 3.9%). The plant is likely to contribute to both sources, the industrial and the traffic plus secondary nitrate.
机译:尽管沼气生产可以带来一些好处,但是关于沼气厂排放物对当地空气质量的潜在影响方面存在研究空白,因此需要对该技术的影响进行准确而全面的评估。本研究通过表征工业区附近的空气污染来解决这个问题,该工业区包括沼气生产(来自生物质)和位于意大利南部的燃烧厂。该方法包括对气态污染物的浓度,颗粒浓度和数量和质量的尺寸分布以及PM_(2.5)化学成分进行高级统计分析。进行了辅助气象参数支持的高温分辨率测量,并使用正矩阵分解(PMF)受体模型对PM_(2.5)进行了源分配。综合方法提供了由不同的人为来源(即交通,生物质燃烧和工业设施)组成的发射图,特别关注沼气厂的排放。结果表明,CO和氮氧化物受车辆交通和生物质燃烧的影响,但观察到植物对NO的贡献。 SO_2主要受到来自工业区的运输的影响,但检测到第二个与沼气厂排放物相容的地方贡献。分析了四个尺寸范围内的颗粒浓度数:纳米颗粒(D <0.05μm),超细颗粒(D <0.3μm),积累(0.3 1μm)。纳米颗粒和超细颗粒主要受车辆交通和生物质燃烧的影响,相反,植物的贡献以积累方式个体化。 PMF5确定了六个来源的贡献:地壳(测得的PM_(2.5)的14.7%±2.1%);海洋气雾剂(老化)(12.9%±2.3%);生物质燃烧(32.8%±1.4%);二次硫酸盐(19.7%±2.4%);主要工业排放(5.4%±23%);交通流量和次生硝酸盐(17.0%±3.9%)。该工厂很可能对工业,交通以及二次硝酸盐都产生贡献。

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