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首页> 外文期刊>Atmospheric chemistry and physics >Single-particle characterization of aerosols collected at a remote site in the Amazonian rainforest and an urban site in Manaus, Brazil
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Single-particle characterization of aerosols collected at a remote site in the Amazonian rainforest and an urban site in Manaus, Brazil

机译:在亚马逊雨林的遥远场地收集的气溶胶的单粒子特征,以及巴西曼纳州的城市遗址

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摘要

In this study, aerosol samples collected at a remote site in the Amazonian rainforest and an urban site in Manaus, Brazil, were investigated on a single-particle basis using a quantitative energy-dispersive electron probe X-ray microanalysis (ED-EPMA). A total of 23 aerosol samples were collected in four size ranges (0.25-0.5, 0.5-1.0, 1.0-2.0, and 2.0-4.0 mu m) during the wet season in 2012 at two Amazon basin sites: 10 samples in Manaus, an urban area; and 13 samples at an 80m high tower, located at the Amazon Tall Tower Observatory (ATTO) site in the middle of the rainforest, 150 km northeast of Manaus. The aerosol particles were classified into nine particle types based on the morphology on the secondary electron images (SEIs) together with the elemental concentrations of 3162 individual particles: (i) secondary organic aerosols (SOA); (ii) ammonium sulfate (AS); (iii) SOA and AS mixtures; (iv) aged mineral dust; (v) reacted sea salts; (vi) primary biological aerosol (PBA); (vii) carbon-rich or elemental carbon (EC) particles, such as soot, tarball, and char; (viii) fly ash; and (ix) heavy metal (HM, such as Fe, Zn, Ni, and Ti)-containing particles. In submicron aerosols collected at the ATTO site, SOA and AS mixture particles were predominant (50 %-94% in relative abundance) with SOA and ammonium sulfate comprising 73 %-100 %. In supermicron aerosols at the ATTO site, aged mineral dust and sea salts (37 %-70 %) as well as SOA and ammonium sulfate (28 %-58 %) were abundant. PBAs were observed abundantly in the PM2-4 fraction (46 %), and EC and fly ash particles were absent in all size fractions. The analysis of a bulk PM0.25-0.5 aerosol sample from the ATTO site using Raman microspectrometry and attenuated total reflection Fourier-transform infrared spectroscopy (ATR-FTIR) showed that ammonium sulfate, organics, and minerals are the major chemical species, which is consistent with the ED-EPMA results. In the submicron aerosols collected in Manaus, either SOA and
机译:在这项研究中,使用定量能量分散电子探针X射线微分析(ED-EPMA)在一个单粒子的基础上在一颗单粒子的遥远场地收集的气溶胶样品。在2012年的雨季在两个亚马逊盆地网站上,共收集23个气溶胶样品(0.25-0.5,0.5-1.0,1.0-2.0和2.0-4.0 mu m):Manaus的10个样品市区;在80米高塔的13个样本,位于雨林中间的亚马逊高塔田天文台(Atto)遗址,马瑙斯东北150公里。基于二次电子图像(SEIS)的形态与3162个单独颗粒的元素浓度一起分为九种颗粒类型:(i)二次有机气溶胶(SOA); (ii)硫酸铵(AS); (iii)SOA和混合; (iv)老年矿物粉尘; (v)对海盐的反应; (vi)初级生物气溶胶(PBA); (vii)富含碳的或元素碳(EC)颗粒,如烟灰,tarball和炭; (viii)飞灰; (IX)重金属(HM,例如Fe,Zn,Ni和Ti)占颗粒。在收集在Atto位点的亚微粒气溶胶中,SOA和混合物颗粒具有优势(相对丰度的50%-94%),SOA和硫酸铵包含73%-100%。在Atto遗址的超级纤维醇中,老年矿物粉尘和海盐(37%-70%)以及SOA和硫酸铵(28%-58%)是​​丰富的。在PM2-4分数(46%)中大量观察到PBA,并且在所有尺寸级分中不存在EC和粉煤灰颗粒。使用拉曼微穴位测量的Atto PM0.25-0.5气溶胶样品的分析和衰减的总反射傅里叶变换红外光谱(ATR-FTIR)显示硫酸铵,有机物和矿物质是主要的化学物质,即与ED-EPMA结果一致。在Manaus收集的亚马夏气溶胶中,无论是SOA和

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