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Lifecycle Environmental Impact of High-Speed Rail System in the Houston-Dallas I-45 Corridor

机译:休斯顿-达拉斯I-45走廊的高铁系统对生命周期的环境影响

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Texas has the highest rate of the U.S energy related greenhouse gas (GHG) emissions, and transportation is one of the major contributors. The Houston–Dallas corridor is the busiest routes in Texas. Recently, the development of an intercity High-Speed Rail System (HSR) with Shinkansen N700 series trains has commenced. This study builds the life cycle inventories for vehicles and infrastructure in the HSR system, and conducts a preliminary environmental life cycle assessment. Results indicate that over the design life of the HSR system the total GHG emissions from the vehicle life-time are 9.695 kgCO_(2)eq/VKT, and fossil-fuel usage during vehicle operation is the primary contributor (97%). For the infrastructure, total life-time GHG emissions are 239 kgCO_(2)eq/VKT, out of which, 94% are from the construction stage. Infrastructure is the dominant contributor to end-point impacts in human health category, with 58% of total impact across all damage categories.
机译:得克萨斯州是美国能源相关温室气体(GHG)排放量最高的国家,交通运输是主要的贡献者之一。休斯敦-达拉斯走廊是德克萨斯州最繁忙的航线。最近,已经开始使用新干线N700系列火车开发城际高铁系统(HSR)。这项研究建立了高铁系统中车辆和基础设施的生命周期清单,并进行了初步的环境生命周期评估。结果表明,在高铁系统的设计寿命中,车辆使用寿命内的总温室气体排放量为9.695 kgCO_(2)eq / VKT,其中,车辆操作过程中的化石燃料使用量是主要因素(97%)。对于基础设施,整个生命周期的温室气体排放量为239 kgCO_(2)eq / VKT,其中94%来自建设阶段。基础设施是影响人类健康类别端点影响的主要因素,占所有损害类别总影响的58%。

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