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孟加拉国达卡大气颗粒物中棕碳的光学特性:溶剂效应分析与发色团鉴定

Optical characteristics of brown carbon in the atmospheric particulate matter of Dhaka, Bangladesh: Analysis of solvent effects and chromophore identification.

作者信息

Ankhy Razia Sultana, Roy Shatabdi, Nahar Aynun, Akbor Ahedul, Al-Amin Hossen Md, Jeba Farah, Safiqul Islam Md, Moniruzzaman Mohammad, Salam Abdus

机构信息

Department of Chemistry, Faculty of Science, University of Dhaka, Dhaka, 1000, Bangladesh.

Bangladesh Council of Scientific and Industrial Research (BCSIR), Dhaka, 1205, Bangladesh.

出版信息

Heliyon. 2024 Aug 13;10(16):e36213. doi: 10.1016/j.heliyon.2024.e36213. eCollection 2024 Aug 30.

Abstract

The prevalence of brown carbon (BrC) in the atmosphere has experienced a notable upsurge owing to human activities of anthropogenic origin. This study aims to examine the optical characteristics of BrC in both deionized (DI) water and organic solvents (OS), alongside the identification of BrC chromophores within the ambient atmosphere of Dhaka, Bangladesh. Particulate matter (PM) samples were collected on quartz filters using a low-volume sampler from December 2021 to May 2022 at Mukarram Hussain Khundker Bhaban, University of Dhaka. The concentration of BrC was measured using soot analyzer, optical properties of BrC were determined using UV-Vis spectrometer, and BrC chromophores were identified with GC-MS. Average concentration of BrC was 19.13 ± 5.71 μgm. The average of absorption coefficient (b), mass absorption efficiency (MAE), absorption angstrom exponent (AAE), and refractive index (k) of BrC_DI have been observed to be 38.75 ± 21.90 Mm, 2.16 ± 1.42 m g, 1.51 ± 0.08, 0.06 ± 0.04, respectively. The absorption coefficient and MAE of BrC_OS are 1.3 and 1.36 times, respectively higher than that of BrC_DI. Thirty chromophores of BrC have been identified, predominantly consisting of oxygenated compounds. Derivatives of Bisphenol A (CHOSi) were detected in all samples of oxygenated compounds, primarily originating from the combustion of plastic and the incineration of e-waste. Additionally, compounds containing nitrogen and sulfur, such as CHNO, CHN, and CHNOS, were identified, largely attributed to biomass combustion and traffic emissions. These chromophores play a significant role in the absorption of solar radiation, thus influencing atmospheric photochemistry.

摘要

由于源自人类活动的人为源排放,大气中棕碳(BrC)的流行率显著上升。本研究旨在研究去离子水(DI)和有机溶剂(OS)中BrC的光学特性,同时识别孟加拉国达卡市环境大气中的BrC发色团。2021年12月至2022年5月,在达卡大学的穆卡拉姆·侯赛因·孔德克楼使用低流量采样器在石英滤膜上采集颗粒物(PM)样本。使用烟尘分析仪测量BrC浓度,使用紫外可见光谱仪测定BrC的光学特性,并用气相色谱-质谱联用仪(GC-MS)识别BrC发色团。BrC的平均浓度为19.13±5.71μg/m³。观察到BrC_DI的吸收系数(b)、质量吸收效率(MAE)、吸收埃指数(AAE)和折射率(k)的平均值分别为38.75±21.90Mm、2.16±1.42m²/g、1.51±0.08、0.06±0.04。BrC_OS的吸收系数和MAE分别比BrC_DI高1.3倍和1.36倍。已识别出30种BrC发色团,主要由含氧化合物组成。在所有含氧化合物样本中均检测到双酚A(CHOSi)的衍生物,主要来源于塑料燃烧和电子垃圾焚烧。此外,还识别出含氮和硫的化合物,如CHNO、CHN和CHNOS,主要归因于生物质燃烧和交通排放。这些发色团在吸收太阳辐射方面发挥着重要作用,从而影响大气光化学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5adb/11380028/0139a12cd893/ga1.jpg

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