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首页> 外文期刊>Environmental Research Letters >Air quality impacts of using overnight electricity generation to charge plug-in hybrid electric vehicles for daytime use
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Air quality impacts of using overnight electricity generation to charge plug-in hybrid electric vehicles for daytime use

机译:使用隔夜发电为白天使用的插电式混合动力汽车充电对空气质量的影响

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The air quality impacts of replacing 20% of the gasoline powered light duty vehicle miles traveled with plug-in hybrid electric vehicles (PHEVs) in the region served by the Pennsylvania, New Jersey, Maryland classic grid are examined. Unutilized, base-load nighttime electricity generating capacity is assumed to charge PHEVs that would subsequently be used during urban commutes. The net impact of this scenario on the emissions of precursors to the formation of ozone is an increase in nitrogen oxide (NOx), volatile organic compound (VOC) and CO emissions from electricity generating units during nighttime hours, and a greater decrease in NOx, VOC and CO from mobile emissions in urban areas during daytime hours. The changes in maximum daily 8?h ozone concentrations, predicted using a regional photochemical model (CAMx), are decreases in ozone concentrations between 2 and 6?ppb that are widespread across the urban areas, and increases in ozone concentrations of up to 8?ppb in highly localized areas. Air quality indicators beyond maximum daily ozone concentration are also evaluated, and in general indicate air quality improvements associated with the use of PHEVs. However, a limited number of air quality indicators worsened with the use of PHEVs, suggesting that overall impacts of the use of PHEVs will be complex.
机译:研究了在宾夕法尼亚州,新泽西州,马里兰州经典电网服务的区域内,使用插电式混合动力汽车(PHEV)代替行驶的20%汽油动力轻型汽车行驶里程对空气质量的影响。假设未利用的基本负荷夜间发电能力为PHEV充电,随后将在城市通勤期间使用PHEV。这种情况对形成臭氧的前体排放物的净影响是夜间发电单元的氮氧化物(NOx),挥发性有机化合物(VOC)和CO排放量增加,而NOx减少量更大,白天在城市地区由移动排放产生的VOC和CO。使用区域光化学模型(CAMx)预测的每日最大8小时臭氧浓度变化是,臭氧浓度在2至6 ppppb之间的降低(分布在整个城市地区)和臭氧浓度最高增加8 pph。 ppb在高度局部地区。还将评估超出每日最大臭氧浓度的空气质量指标,并且总体上表明与使用PHEV关联的空气质量改善。但是,由于使用PHEV的空气质量指标有限,这表明使用PHEV的总体影响将是复杂的。

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