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首页> 外文期刊>Science of the total environment >Evaluation of black carbon source apportionment based on one year's daily observations in Beijing
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Evaluation of black carbon source apportionment based on one year's daily observations in Beijing

机译:基于一年的北京日报观察的黑碳源分配评价

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摘要

Combustion-derived black carbon (BC) is increasingly recognized as a significant pollutant that can have adverse effects on the atmospheric environment,human health,and regional climate.Fossil fuel combustion is the main source of BC,yet understanding of the relative contributions to BC from coal and liquid fuel combustion remains incomplete.Moreover,few studies have assessed the relative contributions based on long-term continuous daily field observations.This study adopted a Bayesian model of a three-dimensional array of a stable carbon isotope and the ratios of non-sea-salt K~+ to BC and △BC/△CO of one year's daily observations (from September 1,2017 to August 31,2018) to constrain source apportionment of BC in Beijing (China).Results showed that both the BC and the carbon isotope concentrations exhibited strong seasonal variability,and that the annual BC concentration has decreased significantly in recent years.The Bayesian model results also revealed that the relative contributions from the combustion of coal,liquid fuel,and biomass were 42% ± 18%,42% ± 18%,and 16% ± 11%,respectively,with a larger contribution from coal (liquid fuel) combustion in winter and spring (summer and autumn).The seasonal variation of source appointment was attributed to local and regional fuel combustion coupled with meteorological conditions.With increasing PM_(2.5) level,the BC concentration derived from biomass burning increased fastest,followed by that derived from coal combustion.But concentration of secondary inorganic ions increased faster than BC as PM_(2.5) increased.
机译:燃烧衍生的黑碳(BC)越来越被认为是对大气环境,人类健康和区域气候产生不利影响的显着污染物。FOSSIL燃油燃烧是BC的主要来源,但了解BC对相对贡献的理解由煤和液体燃料燃烧保持incomplete.Moreover,很少有研究评估基于长期的相对贡献连续每日字段observations.This研究采用一个稳定的碳同位素的一个三维阵列的贝叶斯模型和非的比率-Sea-Salt K〜+至BC和△BC/△共同日常观察(从2017年9月1日至8月31,2018),以限制BC在北京(中国)的资源分配。结果表明BC碳同位素浓度表现出强烈的季节性变异性,并且近年来,年度BC浓度显着下降。贝叶斯模型结果也表明相对贡献煤,液体燃料和生物质的燃烧分别为42%±18%,42%±18%,分别为16%±11%,冬季和弹簧中的煤(液体燃料)燃烧贡献夏季和秋季)。源预约的季节变化归因于局部和区域燃料燃烧与气象条件相结合。随着PM_(2.5)水平的增加,燃烧生物质燃烧的BC浓度最快,其次是燃煤。但次级无机离子的浓度比BC增加,因为PM_(2.5)增加。

著录项

  • 来源
    《Science of the total environment》 |2021年第15期|145668.1-145668.9|共9页
  • 作者单位

    Jiangxi Province Key Laboratory of the Causes and Control of Atmospheric Pollution East China University of Technology Nanchang 330013 China;

    Jiangxi Province Key Laboratory of the Causes and Control of Atmospheric Pollution East China University of Technology Nanchang 330013 China;

    Jiangxi Province Key Laboratory of the Causes and Control of Atmospheric Pollution East China University of Technology Nanchang 330013 China;

    Jiangxi Province Key Laboratory of the Causes and Control of Atmospheric Pollution East China University of Technology Nanchang 330013 China School of Environmental Science and Engineering Shanghai Jiao Tong University Shanghai 200240 China;

    Rosenstiel School of Marine and Atmospheric Science University of Miami Miami 33149 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Black carbon; Stable carbon isotope; Source apportionment; Fossil fuel combustion;

    机译:黑碳;稳定的碳同位素;来源分配;化石燃料燃烧;

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