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首页> 外文期刊>Chemosphere >Role of ammonium ion and transition metals in the formation of secondary organic aerosol and metallo-organic complex within fog processed ambient deliquescent submicron particles collected in central part of Indo-Gangetic Plain
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Role of ammonium ion and transition metals in the formation of secondary organic aerosol and metallo-organic complex within fog processed ambient deliquescent submicron particles collected in central part of Indo-Gangetic Plain

机译:铵离子和过渡金属在印度恒河中部雾化处理的环境潮解性亚微米颗粒内形成次级有机气溶胶和金属有机复合物中的作用

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摘要

In this study we observed the role of ammonium ion (NH4+) and transition metals (Fe, Mn, Cr, and Cu) present in ambient submicron particles in stabilizing and enhancing the yield of water soluble organic carbon (WSOC). A good correlation of WSOC with transition metals and NH4+ was found (R-2 = 0.87 and 0.71), respectively within foggy episode collected ambient PM1 (particles having aerodynamic diameter <= 1.0 gm) suggesting plausibleness of alternate oxidation (primarily various carbonyls into their respective organic acids, esters and other derivatives.) and aging mechanisms. Molar concentration of ammonium ion was observed to be exceeded over and above to require in neutralizing the sulphate and nitrate which further hints its role in the neutralization, stabilization and enhancement of subset of WSOC such as water soluble organic acids. Transition metals were further apportioned using enrichment factor analysis. The source of Fe, Mn, and Cr was found to be crustal and Cu was tagged to anthropogenic origin. This study also described the plausible role of significant predictors (Fe and Cu) in the secondary organic aerosol (SOA) formation through effect of Fenton chemistry. Mass-to-charge ratio of identified oxalic acid from our published recent field study (carried out from same sampling location) was used for understanding the possible metallo-organic complex with Fe supports the substantial role of Fe in SOA formation in the deliquescent submicron particles facilitated by aqueous-phase chemistry. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在这项研究中,我们观察到环境亚微米粒子中存在的铵离子(NH4 +)和过渡金属(Fe,Mn,Cr和Cu)在稳定和提高水溶性有机碳(WSOC)产量方面的作用。发现WSOC与过渡金属和NH4 +的相关性很好(R-2 = 0.87和0.71),分别在有雾的环境中收集的PM1(空气动力学直径<= 1.0 gm的颗粒)内表明了交替氧化的可能性(主要是各种羰基化合物进入它们的混合物中)相应的有机酸,酯和其他衍生物。)和老化机理。观察到超过摩尔浓度的铵离子超过了中和硫酸盐和硝酸盐所需的摩尔浓度,这进一步暗示了其在中和,稳定和增强WSOC子集(如水溶性有机酸)中的作用。使用富集因子分析将过渡金属进一步分配。发现铁,锰和铬的来源是地壳,而铜则被标记为人为来源。这项研究还描述了通过Fenton化学作用,重要预测因子(Fe和Cu)在次生有机气溶胶(SOA)形成中的合理作用。从我们最近发表的现场研究中确定的草酸的质荷比(从同一采样位置进行)用于理解可能与Fe形成的金属有机络合物,支持潮解性亚微米颗粒中Fe在SOA形成中的重要作用由水相化学促进。 (C)2017 Elsevier Ltd.保留所有权利。

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