Systems Assessment Group, Energy Systems Division, Argonne National Laboratory , 9700 South Cass Avenue, Argonne, Illinois 60439, United States.
Environ Sci Technol. 2014 Oct 21;48(20):12445-53. doi: 10.1021/es503852u. Epub 2014 Oct 10.
The climate impact assessment of vehicle/fuel systems may be incomplete without considering short-lived climate forcers of black carbon (BC) and primary organic carbon (POC). We quantified life-cycle BC and POC emissions of a large variety of vehicle/fuel systems with an expanded Greenhouse gases, Regulated Emissions, and Energy use in Transportation model developed at Argonne National Laboratory. Life-cycle BC and POC emissions have small impacts on life-cycle greenhouse gas (GHG) emissions of gasoline, diesel, and other fuel vehicles, but would add 34, 16, and 16 g CO2 equivalent (CO2e)/mile, or 125, 56, and 56 g CO2e/mile with the 100 or 20 year Global Warming Potentials of BC and POC emissions, respectively, for vehicles fueled with corn stover-, willow tree-, and Brazilian sugarcane-derived ethanol, mostly due to BC- and POC-intensive biomass-fired boilers in cellulosic and sugarcane ethanol plants for steam and electricity production, biomass open burning in sugarcane fields, and diesel-powered agricultural equipment for biomass feedstock production/harvest. As a result, life-cycle GHG emission reduction potentials of these ethanol types, though still significant, are reduced from those without considering BC and POC emissions. These findings, together with a newly expanded GREET version, help quantify the previously unknown impacts of BC and POC emissions on life-cycle GHG emissions of U.S. vehicle/fuel systems.
如果不考虑黑碳 (BC) 和一次有机碳 (POC) 等短寿命气候强迫因素,对车辆/燃料系统的气候影响评估可能并不完整。我们使用美国阿贡国家实验室开发的扩展温室气体、法规排放和交通能源利用模型,量化了各种车辆/燃料系统的生命周期 BC 和 POC 排放。生命周期 BC 和 POC 排放对汽油、柴油和其他燃料车辆的生命周期温室气体 (GHG) 排放影响较小,但分别会增加 34、16 和 16 克二氧化碳当量 (CO2e)/英里,或分别增加 125、56 和 56 克 CO2e/英里,这是因为以玉米秸秆、柳树和巴西甘蔗为原料的乙醇燃料车辆的纤维素和甘蔗乙醇工厂中用于蒸汽和电力生产的 BC 和 POC 密集型生物质燃烧锅炉、甘蔗田中生物质露天燃烧以及用于生物质原料生产/收获的柴油动力农业设备造成的。因此,这些乙醇类型的生命周期 GHG 减排潜力虽然仍然很大,但由于没有考虑到 BC 和 POC 排放而有所降低。这些发现,连同一个新扩展的 GREET 版本,有助于量化以前未知的 BC 和 POC 排放对美国车辆/燃料系统生命周期 GHG 排放的影响。