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Life cycle GHG emissions and lifetime costs of medium-duty diesel and battery electric trucks in Toronto, Canada

机译:加拿大多伦多中型柴油和电池电动卡车的生命周期温室气体排放量和生命周期成本

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Battery-electric trucks (BET) are an alternative to diesel trucks and have the potential for lower life cycle greenhouse gas (GHG) emissions and total lifetime costs (TCO). This study compares a Class 6 medium-duty BET with a Class 6 medium-duty diesel truck. Vehicle fuel consumption is simulated for Toronto driving conditions, based on different drive cycles, operating temperatures and payloads. The base case results show the BET has lower life cycle GHG emissions and higher lifetime TCO than the diesel truck, but this does not hold across all conditions. GHG emissions of the BET are higher than those of the diesel truck under 100% payload in driving conditions with infrequent stops, while the results are less sensitive to operating temperature. The lifetime cost of the BET can be lower than that of the diesel truck in situations that have driving with frequent stops/starts and with low payloads and low battery and charging station costs. These variables also affect estimated GHG abatement costs, which are highly relevant as carbon pricing is being introduced in the province. (C) 2017 Elsevier Ltd. All rights reserved.
机译:电动卡车(BET)是柴油卡车的替代产品,具有降低生命周期温室气体(GHG)排放量和总生命周期成本(TCO)的潜力。这项研究将6级中型BET与6级中型柴油卡车进行了比较。根据不同的驾驶周期,工作温度和有效载荷,针对多伦多的驾驶条件模拟了车辆的燃油消耗。基本案例结果表明,与柴油卡车相比,BET具有更低的生命周期温室气体排放和更高的总拥有成本,但这并不适用于所有情况。在不经常停车的驾驶条件下,BET的GHG排放要高于柴油卡车在100%有效载荷下的排放,而结果对工作温度的敏感性较低。在频繁停车/启动,有效载荷少,电池和充电站成本低的情况下,BET的生命周期成本可以比柴油卡车低。这些变量还影响估算的温室气体减排成本,这与该省开始实行碳定价时高度相关。 (C)2017 Elsevier Ltd.保留所有权利。

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