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沥青路面铺设过程中的沥青烟和多环芳烃:排放特征、暴露因素和环境影响。

Bitumen fumes and PAHs in asphalt road paving: Emission characteristics, determinants of exposure and environmental impact.

机构信息

University of Grenoble Alpes, CNRS, Grenoble INP, CHU Grenoble Alpes, TIMC, 38000, Grenoble, France.

University of Grenoble Alpes, CNRS, Grenoble INP, CHU Grenoble Alpes, TIMC, 38000, Grenoble, France.

出版信息

Environ Res. 2023 Jul 1;228:115824. doi: 10.1016/j.envres.2023.115824. Epub 2023 Apr 6.

Abstract

BACKGROUND

Asphalt road paving and its subsequent complex airborne emissions have raised concerns about occupational exposures and environmental impacts. Although several studies described bitumen fumes or Polycyclic Aromatic Hydrocarbons (PAH) emissions at specific worksites, no comprehensive studies have characterised road paving emissions and identified the main determinants of exposure.

METHODS

A 10-year study from 2012 to 2022 was performed to examine the pollutants resulting from bitumen fume emissions and covering the main processes used in road paving (asphalt production, mechanical rolled asphalt paving, manual paving, mastic asphalt paving, emulsion paving, and coal-tar asphalt milling). A total of 623 air samples were collected at 63 worksites (on 290 workers, in the environment and near emission sources), and bitumen fumes, PAHs, aldehydes and volatile organic compounds were analysed. Biomonitoring campaigns were performed on 130 workers to assess internal exposure to PAHs.

RESULTS

Fume emissions revealed complex mixtures of C-C compounds, including linear saturated hydrocarbons (C-C), alicyclic hydrocarbons and aliphatic ketones. PAHs were dominated by 2-3 aromatic ring compounds (naphthalene, fluorene, and phenanthrene), and C-C aldehydes were identified. Binder proportion, paving temperature, outdoor temperature, workload and job category influenced airborne concentrations. A significant temporal trend was observed over the time period of the study, with decreasing BF and PAH exposures. PAH biomonitoring was consistent with air samples, and urinary metabolites of 2-3 ring PAHs dominated over 4-5 ring PAHs. Occupational exposures were generally far lower than exposure limits, except coal-tar asphalt milling activities. Very low environmental concentrations were measured, which highlights a negligible contribution of paving emissions to global environmental pollution.

CONCLUSION

The present study confirmed the complex nature of bitumen fumes and characterised the main determinants of exposure. The results highlight the need to reduce the paving temperature and binder proportion. Recycled asphalt pavement use was not associated with higher emissions. The impact of paving activities on environmental airborne pollution was deemed negligible.

摘要

背景

沥青道路铺设及其随后产生的复杂空气排放物引起了人们对职业暴露和环境影响的关注。尽管有几项研究描述了特定工作场所的沥青烟雾或多环芳烃(PAH)排放,但没有全面的研究来描述道路铺设排放物并确定暴露的主要决定因素。

方法

进行了一项从 2012 年到 2022 年的 10 年研究,以检查沥青烟雾排放产生的污染物,并涵盖道路铺设的主要过程(沥青生产、机械碾压沥青铺设、人工铺设、乳化沥青铺设、煤焦油沥青铣刨)。在 63 个工作场所(在 290 名工人、环境中和排放源附近)共采集了 623 个空气样本,分析了沥青烟雾、PAH、醛和挥发性有机化合物。对 130 名工人进行了生物监测活动,以评估对 PAH 的内部暴露。

结果

烟雾排放物揭示了 C-C 化合物的复杂混合物,包括线性饱和烃(C-C)、脂环烃和脂肪族酮。PAH 主要由 2-3 个芳香环化合物(萘、芴和菲)组成,并确定了 C-C 醛。粘结剂比例、铺设温度、室外温度、工作量和工作类别影响空气浓度。在研究期间,观察到一个显著的时间趋势,BF 和 PAH 暴露呈下降趋势。PAH 生物监测与空气样本一致,2-3 环 PAH 的尿代谢物占主导地位,超过 4-5 环 PAH。职业暴露通常远低于暴露限值,除了煤焦油沥青铣刨活动。测量到的环境浓度非常低,这突出表明铺设排放物对全球环境污染的贡献可以忽略不计。

结论

本研究证实了沥青烟雾的复杂性,并确定了暴露的主要决定因素。结果强调需要降低铺设温度和粘结剂比例。使用再生沥青路面与更高的排放无关。铺设活动对环境空气污染的影响被认为可以忽略不计。

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