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正常和重度雾霾期间元素碳与黑碳测量值的比较:对研究的启示

Comparison of elemental and black carbon measurements during normal and heavy haze periods: implications for research.

作者信息

Zhi Guorui, Chen Yingjun, Xue Zhigang, Meng Fan, Cai Jing, Sheng Guoying, Fu Jiamo

机构信息

State Key Laboratory of Environmental Criteria and Risk Assessment, Chinese Research Academy of Environmental Sciences, Beijing, 100012, China.

出版信息

Environ Monit Assess. 2014 Oct;186(10):6097-106. doi: 10.1007/s10661-014-3842-2. Epub 2014 Jun 6.

Abstract

Studies specifically addressing the elemental carbon (EC)/black carbon (BC) relationship during the transition from clean-normal (CN) air quality to heavy haze (HH) are rare but have important health and climate implications. The present study, in which EC levels are measured using a thermal-optical method and BC levels are measured using an optical method (aethalometer), provides a preliminary insight into this issue. The average daily EC concentration was 3.08 ± 1.10 μg/m(3) during the CN stage but climbed to 11.77 ± 2.01 μg/m(3) during the HH stage. More importantly, the BC/EC ratio averaged 0.92 ± 0.14 during the CN state and increased to 1.88 ± 0.30 during the HH state. This significant increase in BC/EC ratio has been confirmed to result partially from an increase in the in situ light absorption efficiency (σap) due to an enhanced internal mixing of the EC with other species. However, the exact enhancement of σap was unavailable because our monitoring scheme could not acquire the in situ absorption (bap) essential for σap calculation. This reveals a need to perform simultaneous measurement of EC and bap over a time period that includes both the CN and HH stages. In addition, the sensitivity of EC to both anthropogenic emissions and HH conditions implies a need to systematically study how to include EC complex (EC concentration, OC/EC ratio, and σap) as an indicator in air quality observations, in alert systems that assess air quality, and in the governance of emissions and human behaviors.

摘要

专门针对从清洁正常(CN)空气质量过渡到重度雾霾(HH)期间元素碳(EC)/黑碳(BC)关系的研究很少,但具有重要的健康和气候意义。本研究采用热光法测量EC水平,采用光学方法(黑碳仪)测量BC水平,为该问题提供了初步见解。在CN阶段,每日平均EC浓度为3.08±1.10μg/m³,但在HH阶段攀升至11.77±2.01μg/m³。更重要的是,BC/EC比值在CN状态下平均为0.92±0.14,在HH状态下增加到1.88±0.30。已证实BC/EC比值的显著增加部分是由于EC与其他物种的内部混合增强导致原位光吸收效率(σap)增加。然而,由于我们的监测方案无法获取计算σap所需的原位吸收(bap),因此无法确定σap的确切增强情况。这表明需要在包括CN和HH阶段的时间段内同时测量EC和bap。此外,EC对人为排放和HH条件的敏感性意味着需要系统地研究如何将EC复合体(EC浓度、OC/EC比值和σap)作为空气质量观测、评估空气质量的警报系统以及排放和人类行为治理中的一个指标。

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