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Particulates and noise exposure during bicycle, bus and car commuting: A study in three European cities

机译:自行车,公交车和汽车上下班时的颗粒物和噪音暴露:对三个欧洲城市的研究

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摘要

Background: In order to curb traffic-related air pollution and its impact on the physical environment, contemporary city commuters are encouraged to shift from private car use to active or public transport modes. However, personal exposures to particulate matter (PM), black carbon and noise during commuting may be substantial. Therefore, studies comparing exposures during recommended modes of transport versus car trips are needed. Methods: We measured personal exposure to various-sized particulates, soot, and noise during commuting by bicycle, bus and car in three European cities: Helsinki in Finland, Rotterdam in the Netherlands and Thessaloniki in Greece using portable monitoring devices. We monitored commonly travelled routes in these cities. Results: The total number of one-way trips yielding data on any of the measured parameters were 84, 72, 94 and 69 for bicycle, bus, closed-window car and open-window car modes, respectively. The highest mean PM_(2.5) (85 (μg/m~3), PM_(10) (131 μg/m~3), black carbon (10.9 μg/m~3) and noise (75 dBA) levels were recorded on the bus, bus (again), open-window car and bicycle modes, respectively, all in Thessaloniki, PM and soot concentrations were generally higher during biking and taking a bus than during a drive in a a car with closed windows. Ratios of bike:car PM_(10) ranged from 1.1 in Thessaloniki to 2.6 in Helsinki, while bus:car ratios ranged from in 1.0 in Rotterdam to 5.6 in Thessaloniki. Higher noise levels were mostly recorded during bicycle rides. Conclusion: Based on our study, active- and public-transport commuters are often at risk of higher air pollution and noise exposure than private car users. This should be taken into account in urban transportation planning.
机译:背景:为了遏制与交通有关的空气污染及其对自然环境的影响,鼓励当代城市通勤者从私家车使用转向主动或公共交通方式。但是,通勤期间个人暴露于颗粒物(PM),黑碳和噪声的情况可能会很大。因此,需要对推荐的运输方式与乘车方式下的暴露进行比较的研究。方法:在三个欧洲城市:芬兰的赫尔辛基,荷兰的鹿特丹和希腊的塞萨洛尼基,我们通过自行车,公共汽车和汽车上下班时,测量了个人暴露于各种大小的微粒,烟灰和噪音的情况。我们监视了这些城市中经常旅行的路线。结果:对于自行车,公交车,闭窗汽车和开窗汽车模式,任何一个测量参数的单程出行总数分别为84、72、94和69。记录了最高平均PM_(2.5)(85(μg/ m〜3),PM_(10)(131μg/ m〜3),黑碳(10.9μg/ m〜3)和噪声(75 dBA)的水平在塞萨洛尼基,公交车(再次),敞篷车和自行车模式分别处于偏瘫状态,PM和烟灰浓度在骑车和乘坐公交车时比在关闭窗户的汽车中行驶时高。汽车PM_(10)的范围从塞萨洛尼基的1.1到赫尔辛基的2.6,而公交车与汽车的比例从鹿特丹的1.0到塞萨洛尼基的5.6不等,自行车骑行时的噪音水平最高。结论:根据我们的研究,公共交通通勤者通常比私人驾车者有更高的空气污染和噪音暴露风险,在城市交通规划中应考虑到这一点。

著录项

  • 来源
    《Environmental research》 |2017年第4期|181-189|共9页
  • 作者单位

    Department of Health Protection, THL - National Institute for Health and Welfare, P.O. Box 95, FI-70701 Kuopio, Finland;

    Department of Health Protection, THL - National Institute for Health and Welfare, P.O. Box 95, FI-70701 Kuopio, Finland;

    Department of Health Protection, THL - National Institute for Health and Welfare, P.O. Box 95, FI-70701 Kuopio, Finland;

    Department of Health Protection, THL - National Institute for Health and Welfare, P.O. Box 95, FI-70701 Kuopio, Finland;

    Department of Health Protection, THL - National Institute for Health and Welfare, P.O. Box 95, FI-70701 Kuopio, Finland;

    Laboratory of Applied Thermodynamics, Aristotle University, Thessaloniki, Greece;

    Laboratory of Applied Thermodynamics, Aristotle University, Thessaloniki, Greece;

    TNO, Netherlands Organization for Applied Scientific Research, Utrecht, The Netherlands;

    TNO, Netherlands Organization for Applied Scientific Research, Utrecht, The Netherlands;

    Department of Health Protection, THL - National Institute for Health and Welfare, P.O. Box 95, FI-70701 Kuopio, Finland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Particulate matter; Soot; Noise; Transport mode; Exposure; Road traffic;

    机译:颗粒物;煤烟;噪声;运输方式接触;道路交通;

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