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Marginal Life-Cycle Greenhouse Gas Emissions of Electricity Generation in Portugal and Implications for Electric Vehicles

机译:葡萄牙发电的边际生命周期温室气体排放及对电动汽车的启示

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This article assesses marginal greenhouse gas (GHG) emissions of electricity generation in Portugal to understand the impact of activities that affect electricity demand in the near term. In particular, it investigates the introduction of electric vehicles (EVs) in the Portuguese light-duty fleet considering different displacement and charging scenarios (vehicle technologies displaced, EV charging time). Coal and natural gas were identified as the marginal sources, but their contribution to the margin depended on the hour of the day, time of year, and system load, causing marginal emissions from electricity to vary significantly. Results show that for an electricity system with a high share of non-dispatchable renewable power, such as the Portuguese system, marginal emissions are considerably higher than average emissions. Because of the temporal variability in the marginal electricity supply, the time of charging may have a major influence on the GHG emissions of EVs. Off-peak charging leads to higher GHG emissions than peak charging, due to a higher contribution of coal to the margin. Furthermore, compared to an all-conventional fleet, EV introduction causes an increase in overall GHG emissions in most cases. However, EV effects are very dependent on the time of charging and the assumptions about the displaced technology.
机译:本文评估了葡萄牙发电的边际温室气体(GHG)排放量,以了解短期内影响电力需求的活动的影响。特别是,它研究了葡萄牙轻型车队在考虑不同排量和充电方案(车辆技术被置换,电动汽车充电时间)的情况下引入电动汽车(EV)的情况。煤和天然气被确定为边际来源,但是它们对边际的贡献取决于一天中的小时,一年中的时间和系统负载,从而导致电力的边际排放量发生显着变化。结果表明,对于不可分派的可再生电力份额很高的电力系统,例如葡萄牙系统,边际排放量大大高于平均排放量。由于边际电力供应的时间变化,充电时间可能会对电动汽车的温室气体排放产生重大影响。非高峰充电导致的温室气体排放量高于高峰充电,这是由于煤炭对利润的贡献更大。此外,与传统的车队相比,电动车的引入在大多数情况下会导致整体温室气体排放量的增加。但是,电动汽车的影响很大程度上取决于充电时间和有关替代技术的假设。

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