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基于无机、有机及混合体系酸碱平衡的气溶胶pH值光谱测定法

Spectroscopic Determination of Aerosol pH from Acid-Base Equilibria in Inorganic, Organic, and Mixed Systems.

作者信息

Craig Rebecca L, Nandy Lucy, Axson Jessica L, Dutcher Cari S, Ault Andrew P

机构信息

Department of Mechanical Engineering, University of Minnesota , Minneapolis, Minnesota 55455, United States.

出版信息

J Phys Chem A. 2017 Aug 3;121(30):5690-5699. doi: 10.1021/acs.jpca.7b05261. Epub 2017 Jul 24.

Abstract

Atmospheric aerosol acidity impacts key multiphase processes, such as acid-catalyzed reactions leading to secondary organic aerosol formation, which impact climate and human health. However, traditional indirect methods of estimating aerosol pH often disagree with thermodynamic model predictions, resulting in aerosol acidity still being poorly understood in the atmosphere. Herein, a recently developed method coupling Raman microspectroscopy with extended Debye-Hückel activity calculations to directly determine the acidity of individual particles (1-15 μm projected area diameter, average 6 μm) was applied to a range of atmospherically relevant inorganic and organic acid-base equilibria systems (HNO/NO, HCO/CO, CHCOOH/CHCOO, and HCO/CO) covering a broad pH range (-1 to 10), as well as an inorganic-organic mixture (sulfate-oxalate). Given the ionic strength of the inorganic solutions, the H activity, γ(H), yielded lower values (0.68-0.75) than the organic and mixed systems (0.72-0.80). A consistent relationship between increasing peak broadness with decreasing pH was observed for acidic species, but not their conjugate bases. Greater insight into spectroscopic responses to acid-base equilibria for more complicated mixtures is still needed to understand the behavior of atmospheric aerosols.

摘要

大气气溶胶酸度影响关键的多相过程,例如导致二次有机气溶胶形成的酸催化反应,这会影响气候和人类健康。然而,传统的估算气溶胶pH值的间接方法往往与热力学模型预测结果不一致,导致大气中的气溶胶酸度仍未得到充分理解。在此,一种最近开发的将拉曼显微光谱与扩展德拜-休克尔活度计算相结合以直接测定单个颗粒(投影面积直径为1 - 15μm,平均6μm)酸度的方法,被应用于一系列与大气相关的无机和有机酸碱平衡体系(HNO₃/NO₃⁻、H₂CO₃/HCO₃⁻、CH₃COOH/CH₃COO⁻以及H₂C₂O₄/HCO₄⁻),这些体系涵盖了较宽的pH范围(-1至10),还包括一种无机 - 有机混合物(硫酸盐 - 草酸盐)。考虑到无机溶液的离子强度,H⁺活度γ(H⁺)在无机体系中产生的值(0.68 - 0.75)低于有机体系和混合体系(0.72 - 0.80)。对于酸性物种,观察到随着pH值降低峰宽增加的一致关系,但其共轭碱则不然。对于更复杂的混合物,仍需要更深入了解酸碱平衡的光谱响应,以理解大气气溶胶的行为。

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