首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Regional variability in black carbon and carbon monoxide ratio from long-term observations over East Asia: assessment of representativeness for black carbon (BC) and carbon monoxide (CO) emission inventories
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Regional variability in black carbon and carbon monoxide ratio from long-term observations over East Asia: assessment of representativeness for black carbon (BC) and carbon monoxide (CO) emission inventories

机译:黑碳的区域变异和东亚长期观察的一氧化碳比例:对黑碳(BC)和一氧化碳(CO)排放库存的代表性评估

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The black carbon (BC) and carbon monoxide (CO) emission ratios were estimated and compiled from long-term, harmonized observations of the ΔBC∕ΔCO ratios under conditions unaffected by wet deposition at four sites in East Asia, including two sites in South Korea (Baengnyeong and Gosan) and two sites in Japan (Noto and Fukuoka). Extended spatio-temporal coverage enabled estimation of the full seasonality and elucidation of the emission ratio in North Korea for the first time. The estimated ratios were used to validate the Regional Emission inventory in ASia (REAS) version 2.1 based on six study domains (“East China”, “North China”, “Northeast China”, South Korea, North Korea, and Japan). We found that the ΔBC∕ΔCO ratios from four sites converged into a narrow range (6.2–7.9ngm?3ppb?1), suggesting consistency in the results from independent observations and similarity in source profiles over the regions. The BC∕CO ratios from the REAS emission inventory (7.7ngm?3ppb?1 for East China – 23.2ngm?3ppb?1 for South Korea) were overestimated by factors of 1.1 for East China to 3.0 for South Korea, whereas the ratio for North Korea (3.7ngm?3ppb?1 from REAS) was underestimated by a factor of 2.0, most likely due to inaccurate emissions from the road transportation sector. Seasonal variation in the BC∕CO ratio from REAS was found to be the highest in winter (China and North Korea) or summer (South Korea and Japan), whereas the measured ΔBC∕ΔCO ratio was the highest in spring in all source regions, indicating the need for further characterization of the seasonality when creating a bottom-up emission inventory. At levels of administrative districts, overestimation in Seoul, the southwestern regions of South Korea, and Northeast China was noticeable, and underestimation was mainly observed in the western regions in North Korea, including Pyongyang. These diagnoses are useful for identifying regions where revisions in the inventory are necessary, providing guidance for the refinement of BC and CO emission rate estimates over East Asia.
机译:估计黑碳(BC)和一氧化碳(CO)排放比率从长期的ΔBC/ΔCo比的长期统一观察,在东亚的四个地点不受湿沉积的条件下,包括韩国的两个站点(Baengnyeong和Gosan)和日本的两个地点(Noto和Fukuoka)。扩展的时空覆盖使得能够估算完整的季节性并首次阐述朝鲜的排放比率。估计的比率用于验证亚洲的区域排放库存(REAR)2.1基于六个研究领域(“华东”,“华北”,“东北”,“东北”,韩国,朝鲜和日本)。我们发现,来自四个站点的ΔBC/ΔCo比将聚集成窄范围(6.2-7.9ng?3ppb?1),建议在该区域的源配置文件中的独立观察和相似性的结果中的一致性。来自AREA发射库存的BC / CO比率(7.7ngm?3ppb?1在华东地区 - 23.2ngm?3韩国3ppb?1为3ppb?1为3ppb?1为韩国为3.0为3.0次为3.0,而这一比例朝鲜(3.7NGM?3PPB?1来自REAR)被低估了2.0倍,最有可能因来自道路运输部门的不准确的排放而受到影响。来自REAR的BC / CO比的季节变化是冬季(中国和朝鲜)或夏季(韩国和日本)最高的,而测量的ΔBC/ΔCO比在所有源区的春季最高,在创建自下而上的排放清单时,表明需要进一步表征季节性。在行政区的水平,首尔的高估,韩国西南地区和东北地区是明显的,在包括平壤在内的西部地区主要观察到低估。这些诊断对于识别库存中的修订是必要的区域,为Edte Asia的BC和CO排放率估算提供了指导。

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