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Direct measurements of black carbon fluxes in central Beijing using the eddy covariance method

机译:北京中部使用涡流协方差法直接测量黑碳通量

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Black carbon (BC) forms an important component of particulate matter globally, due to its impact on climate, the environment and human health. Identifying and quantifying its emission sources are critical for effective policymaking and achieving the desired reduction in air pollution. In this study, we present the first direct measurements of urban BC fluxes using eddy covariance. The measurements were made over Beijing within the UK-China Air Pollution and Human Health (APHH) winter 2016 and summer 2017 campaigns. In both seasons, the mean measured BC mass (winter: 5.49?ng?m ?2 ?s ?1 , summer: 6.10?ng?m ?2 ?s ?1 ) and number fluxes (winter: 261.25?particles?cm ?2 ?s ?1 , summer: 334.37?particles?cm ?2 ?s ?1 ) were similar. Traffic was determined to be the dominant source of the BC fluxes measured during both seasons. The total BC emissions within the 2013 Multi-resolution Emission Inventory for China (MEIC) are on average too high compared to measured fluxes by a factor of 58.8 (winter) and 47.2 (summer). Only a comparison with the MEIC transport sector shows that emissions are also larger (factor of 37.5 in winter and 37.7 in summer) than the measured flux. Emission ratios of BC? ∕ ?NO x and BC? ∕ ?CO are comparable to vehicular emission control standards implemented in January 2017 for gasoline (China?5) and diesel (China?V) engines, indicating a reduction of BC emissions within central Beijing, and extending this to a larger area would further reduce total BC concentrations.
机译:由于其对气候,环境和人类健康的影响,黑碳(BC)在全球形成颗粒物质的重要组成部分。识别和量化其排放来源对于有效的治疗方法至关重要,并实现空气污染所需的降低。在这项研究中,我们介绍了使用涡流协方差的城市BC助焊剂的第一次直接测量。 2016年冬季和2017年夏季举行的英国空气污染和人类健康(APHH)冬季,北京举行了测量。在两个季节,平均测量的BC质量(冬季:5.49?NG?M?2?S?1,夏天:6.10?NG?M?2?S?1)和数量助焊剂(冬季:261.25?颗粒?cm? 2?S?1,夏季:334.37?粒子?cm?2?s?1)是相似的。在两个季节期间,被确定为BC助焊剂的主要来源。 2013年中国(MEIC)中的BC排放量在中国(MEIC)中的平均水平过高,测量的助条超过58.8(冬季)和47.2(夏季)。只有与Meic Transport Sector的比较表明,除测量的通量,排放也比测量的助焊剂更大(冬季冬季37.5系列,37.7分)。 BC的排放比例? /?否x和bc? /?CO与2017年1月实施的车辆排放控制标准适用于汽油(中国?5)和柴油(中国?V)发动机,表明北京中部的公元前公共排放量减少,并将其扩展到更大的区域将进一步减少总BC浓度。

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