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How to choose healthier urban biking routes: CO as a proxy of traffic pollution

机译:如何选择更健康的城市骑自行车路线:CO作为交通污染的代理

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摘要

According to the World Health Organization (WHO) air pollution in urban areas, mainly associated with inhalation of gaseous pollutants and particulate matter emitted from motor vehicles, is responsible for one million deaths per year. Carbon monoxide (CO) from the incomplete combustion of fuel is known to bind with hemoglobin, decreasing the blood oxygen-delivery and inducing tissues hypoxia; being more pronounced under conditions of stress like physical activity. The present study demonstrates the usefulness of a compact CO sensor (Alphasense CO-B4) mounted on a bicycle to evaluate atmospheric levels of CO associated with urban microenvironments within a growing Australian city (Brisbane). Urban bike pathways show pronounced and significant variations in air quality according to the surrounding microenvironment and the time of day. The inhaled dose in real time and the CO total dose over each trip were valuable for estimating the air quality of the route, and identifed how the health benefits of riding a bicycle could be partially offset by poor air quality depending on where and when a cycle route is taken in the inner-city. Finally, environmental conditions, such as wind speed, were found to significantly affected atmospheric CO concentrations, at least during the study period. The present work provides information regarding commuters' exposure to atmospheric pollutants, necessary for modifying the population's (including cyclists) perception of pollution in the urban environment, providing people with the opportunity to choose a healthier route.
机译:据世界卫生组织(WHO)空气污染在城市地区,这主要与气态污染物的吸入和颗粒来自汽车发出的物质有关,负责每年一只万人死亡。从燃料的不完全燃烧的一氧化碳(CO)已知与血红蛋白结合,降低血液中的氧递送和诱导组织缺氧;像的身体活动胁迫条件下被更明显。本研究表明安装在自行车上,以评估与越来越澳大利亚城市(布里斯班)内城市微环境相关联的CO的大气水平的紧凑CO传感器(Alphasense公司CO-B4)的有用性。城市的自行车通道表现出显着的,并根据周围的微环境和一天中的时间空气质量显著的变化。的吸入剂量实时和在每行中的CO总剂量分别为用于估计路径的空气质量有价值的,并且identifed如何骑自行车对健康的益处可以通过空气质量差所抵消不同的地方,并且当循环路线采取了内城。最后,环境条件,如风速,均在研究期间发现显著影响大气中CO浓度,至少。目前的工作提供了有关通勤者暴露于大气污染物,有必要修改污染的人口的(包括骑自行车的人)感知的城市环境,为人们提供了选择的机会更健康的路由信息​​。

著录项

  • 期刊名称 Heliyon
  • 作者单位
  • 年(卷),期 2020(6),6
  • 年度 2020
  • 页码 e04195
  • 总页数 9
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:大气污染;积极运输;一氧化碳;吸入剂量;体育活动;大气科学;环境评估;环境健康;环境影响评估;环境污染;环境科学;

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