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Environmental assessment of urban mobility: Combining life cycle assessment with land-use and transport interaction modelling-Application to Lyon (France)

机译:城市交通环境评估:将生命周期评估与土地利用和运输互动模型相结合-在里昂的应用(法国)

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In France, greenhouse gas (GHG) emissions from transport have grown steadily since 1950 and transport is now the main source of emissions. Despite technological improvements, urban sprawl increases the environmental stress due to car use. This study evaluates urban mobility through assessments of the transport system and travel habits, by applying life cycle assessment methods to the results of mobility simulations that were produced by a Land Use and Transport Interactions (WTI) model. The environmental impacts of four life cycle phases of urban mobility in the Lyon area (exhausts, fuel processing, infrastructure and vehicle life cycle) were estimated through nine indicators (global warming potential, particulate matter emissions, photochemical oxidant emissions, terrestrial acidification, fossil resource depletion, metal depletion, non-renewable energy use, renewable energy use and land occupancy). GHG emissions were estimated to be 3.02 kg CO2-eq inhabitant(-1) day(-1), strongly linked to car use, and indirect impacts represented 21% of GHG emissions, which is consistent with previous studies. Combining life cycle assessment (LCA) with a LUTI model allows changes in the vehicle mix and fuel sources combined with demographic shifts to be assessed, and provides environmental perspectives for transport policy makers and urban planners. It can also provide detailed analysis, by allowing levels of emissions that are generated by different categories of households to be differentiated, according to their revenue and location. Public policies can then focus more accurately on the emitters and be assessed from both an environmental and social point of view. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在法国,自1950年以来,运输产生的温室气体(GHG)排放量一直稳定增长,而运输现已成为主要的排放源。尽管技术上有所进步,但由于汽车的使用,城市蔓延加剧了环境压力。这项研究通过评估运输系统和出行习惯,将生命周期评估方法应用于由土地利用和运输互动(WTI)模型产生的交通模拟结果,评估了城市的机动性。通过九个指标(全球变暖潜势,颗粒物排放,光化学氧化剂排放,陆地酸化,化石资源)估算了里昂地区城市交通四个生命周期阶段(废气,燃料加工,基础设施和车辆生命周期)的环境影响。耗,金属耗,不可再生能源使用,可再生能源使用和土地占用)。温室气体排放估计为3.02千克二氧化碳当量居民(-1)天(-1),与汽车使用密切相关,间接影响占温室气体排放的21%,这与以前的研究一致。将生命周期评估(LCA)与LUTI模型结合使用,可以评估车辆组合和燃料来源的变化以及人口变化,并为运输政策制定者和城市规划人员提供环境观点。它还可以通过根据收入和位置区分不同类别的家庭所产生的排放水平来提供详细的分析。然后,公共政策可以更准确地集中在排放者上,并且可以从环境和社会角度进行评估。 (C)2016 Elsevier Ltd.保留所有权利。

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