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吸收 Angstrom 指数在黑碳源解析中的应用限制:来自西北印度恒河平原的案例研究。

Limitation of the Use of the Absorption Angstrom Exponent for Source Apportionment of Equivalent Black Carbon: a Case Study from the North West Indo-Gangetic Plain.

机构信息

Department of Earth and Environmental Sciences, Indian Institute of Science Education and Research Mohali , Sector 81, S.A.S Nagar, Punjab 140306, India.

LSCE, Laboratoire des Sciences du Climat et de l'Environnement, CNRS-CEA-UVSQ , Orme des Merisiers, F91191 Gif-sur-Yvette, France.

出版信息

Environ Sci Technol. 2016 Jan 19;50(2):814-24. doi: 10.1021/acs.est.5b03868. Epub 2015 Dec 23.

Abstract

Angstrom exponent measurements of equivalent black carbon (BCeq) have recently been introduced as a novel tool to apportion the contribution of biomass burning sources to the BCeq mass. The BCeq is the mass of ideal BC with defined optical properties that, upon deposition on the aethalometer filter tape, would cause equal optical attenuation of light to the actual PM2.5 aerosol deposited. The BCeq mass hence is identical to the mass of the total light-absorbing carbon deposited on the filter tape. Here, we use simultaneously collected data from a seven-wavelength aethalometer and a high-sensitivity proton-transfer reaction mass spectrometer installed at a suburban site in Mohali (Punjab), India, to identify a number of biomass combustion plumes. The identified types of biomass combustion include paddy- and wheat-residue burning, leaf litter, and garbage burning. Traffic plumes were selected for comparison. We find that the combustion efficiency, rather than the fuel used, determines αabs, and consequently, the αabs can be ∼1 for flaming biomass combustion and >1 for older vehicles that operate with poorly optimized engines. Thus, the absorption angstrom exponent is not representative of the fuel used and, therefore, cannot be used as a generic tracer to constrain source contributions.

摘要

埃(Angstrom)吸光系数已被用于测量等效黑碳(BCeq),这是一种将生物质燃烧源对 Bceq 质量贡献进行分配的新工具。BCeq 是具有特定光学性质的理想黑碳的质量,如果沉积在黑碳仪滤带上,将导致沉积在滤带上的实际 PM2.5 气溶胶对光的衰减相同。因此,BCeq 质量与沉积在滤带上的总吸光碳的质量相同。在这里,我们同时使用在印度旁遮普邦 Mohali 郊区站点安装的七波长黑碳仪和高灵敏度质子转移反应质谱仪收集的数据,以识别出一些生物质燃烧羽流。所识别的生物质燃烧类型包括水稻和小麦残留物燃烧、落叶和垃圾燃烧。选择交通羽流进行比较。我们发现,燃烧效率而不是所用燃料决定了αabs,因此,对于燃烧效率高的火焰生物质燃烧,αabs 可以约为 1,而对于发动机优化不佳的老旧车辆,αabs 可以大于 1。因此,吸收 Angstrom 指数不能代表所用燃料,因此不能用作通用示踪剂来限制源贡献。

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