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首页> 外文期刊>Journal of the air & waste management association >Impact of Biogenic Emission Uncertainties on the Simulated Response of Ozone and Fine Particulate Matter to Anthropogenic Emission Reductions
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Impact of Biogenic Emission Uncertainties on the Simulated Response of Ozone and Fine Particulate Matter to Anthropogenic Emission Reductions

机译:生物排放不确定性对臭氧和细颗粒物质对人为排放减少模拟响应的影响

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摘要

The role of emissions of volatile organic compounds and nitric oxide from biogenic sources is becoming increasingly important in regulatory air quality modeling as levels of anthropogenic emissions continue to decrease and stricter health-based air quality standards are being adopted. However, considerable uncertainties still exist in the current estimation methodologies for biogenic emissions. The impact of these uncertainties on ozone and fine particulate matter (PM_(2.5)) levels for the eastern United States was studied, focusing on biogenic emissions estimates from two commonly used biogenic emission models, the Model of Emissions of Gases and Aerosols from Nature (MEGAN) and the Biogenic Emissions Inventory System (BEIS). Photochemical grid modeling simulations were performed for two scenarios: one reflecting present day conditions and the other reflecting a hypothetical future year with reductions in emissions of anthropogenic oxides of nitrogen (NO_x). For ozone, the use of MEGAN emissions resulted in a higher ozone response to hypothetical anthropogenic NO_x emission reductions compared with BEIS. Applying the current U.S. Environmental Protection Agency guidance on regulatory air quality modeling in conjunction with typical maximum ozone concentrations, the differences in estimated future year ozone design values (DVF) stemming from differences in biogenic emissions estimates were on the order of 4 parts per billion (ppb), corresponding to approximately 5% of the daily maximum 8-hr ozone National Ambient Air Quality Standard (NAAQS) of 75 ppb. For PM_(2.5), the differences were 0.1-0.25 μg/m~3 in the summer total organic mass component of DVFs, corresponding to approximately 1-2% of the value of the annual PM_(2.5) NAAQS of 15 μg/m~3. Spatial variations in the ozone and PM_(2.5) differences also reveal that the impacts of different biogenic emission estimates on ozone and PM_(2.5) levels are dependent on ambient levels of anthropogenic emissions.
机译:随着人为排放水平的持续降低和采用更严格的基于健康的空气质量标准,来自生物源的挥发性有机化合物和一氧化氮的排放在监管空气质量建模中的作用越来越重要。但是,目前的生物排放估算方法仍然存在很大的不确定性。研究了这些不确定性对美国东部地区的臭氧和细颗粒物(PM_(2.5))水平的影响,重点研究了两种常用生物成因排放模型(自然界的气体和气溶胶排放模型)的生物成因排放估算( MEGAN)和生物排放清单系统(BEIS)。针对两种情况进行了光化学网格建模模拟:一种反映了当前的状况,另一种反映了假设的未来一年,其中人为氮氧化物(NO_x)的排放量减少了。对于臭氧,与BEIS相比,使用MEGAN排放导致对假设的人为NO_x排放减少的臭氧响应更高。将美国现行的环境保护局指导空气质量建模指南与典型的最大臭氧浓度结合应用,由于生物排放量估算的差异,未来一年的臭氧设计估算值(DVF)的差异约为十亿分之四( ppb),大约相当于每天最高的8小时臭氧国家环境空气质量标准(NAAQS)75 ppb的5%。对于PM_(2.5),DVF的夏季总有机质量组分之间的差异为0.1-0.25μg/ m〜3,大约相当于15μg/ m的年度PM_(2.5)NAAQS值的1-2% 〜3。臭氧和PM_(2.5)差异的空间变化也表明,不同生物排放估算值对臭氧和PM_(2.5)水平的影响取决于人为排放的环境水平。

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    New York State Department of Environmental Conservation, Albany, NY Atmospheric Sciences Research Center, University at Albany, Albany, NY Bureau of Air Quality Analysis and Research, New York State Department of Environmental Conservation, 625 Broadway, Albany, NY 12233-3259;

    Environmental and Occupational Health Sciences Institute, University of Medicine and Dentistry of New Jersey-Robert Wood Johnson Medical School and Rutgers University, Piscataway, NJ;

    Environmental and Occupational Health Sciences Institute, University of Medicine and Dentistry of New Jersey-Robert Wood Johnson Medical School and Rutgers University, Piscataway, NJ;

    Environmental and Occupational Health Sciences Institute, University of Medicine and Dentistry of New Jersey-Robert Wood Johnson Medical School and Rutgers University, Piscataway, NJ;

    New Jersey Department of Environmental Protection, Trenton, NJ;

    New York State Department of Environmental Conservation, Albany, NY;

    New York State Department of Environmental Conservation, Albany, NY;

    New York State Department of Environmental Conservation, Albany, NY;

    New Jersey Department of Environmental Protection, Trenton, NJ;

    New York State Department of Environmental Conservation, Albany, NY;

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