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Bias of Averages in Life-Cycle Footprinting of Infrastructure: Truck and Bus Case Studies

机译:基础设施生命周期足迹的平均值偏差:卡车和公共汽车案例研究

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摘要

The life-cycle output (e.g., level of service) of infrastructure systems heavily influences their normalized environmental footprint. Many studies and tools calculate emission factors based on average productivity; however, the performance of these systems varies over time and space. We evaluate the appropriate use of emission factors based on average levels of service by comparing them to those reflecting a distribution of system outputs. For the provision of truck and bus services where fuel economy is assumed constant over levels of service, emission factor estimation biases, described by Jensen's inequality, always result in larger-than-expected environmental impacts (3%-400%) and depend strongly on the variability and skew of truck payloads and bus ridership. Well-to-wheel greenhouse gas emission factors for diesel trucks in California range from 87 to 1,500 g of CO_2 equivalents per ton-km, depending on the size and type of trucks and the services performed. Along a bus route in San Francisco, well-to-wheel emission factors ranged between 53 and 940 g of CO_2 equivalents per passenger-km. The use of biased emission factors can have profound effects on various policy decisions. If average emission rates must be used, reflecting a distribution of productivity can reduce emission factor biases.
机译:基础设施系统的生命周期输出(例如服务水平)严重影响其标准化的环境足迹。许多研究和工具都是基于平均生产率来计算排放因子的。但是,这些系统的性能会随时间和空间而变化。我们将平均服务水平与反映系统输出分布的排放因子进行比较,从而评估排放因子的合理使用。对于提供燃油经济性在服务水平上恒定的卡车和公共汽车服务,由詹森不等式描述的排放因子估算偏差始终会导致超出预期的环境影响(3%-400%),并且在很大程度上取决于卡车有效载荷和乘车人的可变性和偏度。根据卡车的尺寸和类型以及所提供的服务,加利福尼亚州柴油卡车的轮式温室气体排放因子在每吨公里87至1,500 g CO_2当量之间。在旧金山的公交路线上,轮对车的排放因子在每位乘客-公里范围内的CO_2当量介于53和940 g之间。有偏向的排放因子的使用会对各种政策决定产生深远的影响。如果必须使用平均排放率,则反映生产率的分布可以减少排放因子偏差。

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  • 来源
    《Environmental Science & Technology》 |2014年第22期|13045-13052|共8页
  • 作者单位

    Department of Civil and Environmental Engineering, University of California, 215 McLaughlin Hall, Berkeley, California 94720-1712, United States;

    Department of Civil and Environmental Engineering, University of California, 215 McLaughlin Hall, Berkeley, California 94720-1712, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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