Radiation and Photochemistry Division, Bhabha Atomic Research Centre, Mumbai-400 085.Homi Bhabha National Institute, Mumbai, 400 095, India.
Radiation and Photochemistry Division, Bhabha Atomic Research Centre, Mumbai-400 085.Homi Bhabha National Institute, Mumbai, 400 095, India.
Chemosphere. 2023 Sep;336:139260. doi: 10.1016/j.chemosphere.2023.139260. Epub 2023 Jun 19.
Chemical transformations in mixed aerosols alter the particulate physical properties. Nitrates and water soluble dicarboxylic acids, such as malonic acid (MA), are major components of ambient aerosol particles. Various metal ions such as, Na, Ca, Mg also become part of these complex aerosol systems during their atmospheric lifetime. Interactions among the co-existing ionic and molecular species govern the chemical changes in the aerosol particles. In this work, we provide a comparative account of the effect of metal ion identity (Na, Ca, Mg) on such chemical changes arising from ion-molecular interactions in NaNO-MA, Ca(NO)-MA and Mg(NO)-MA mixed inorganic-organic aerosols. In-situ micro-Raman spectroscopy has enabled us to gain molecular level insight on formation of organic salt and simultaneously estimate nitrate depletion in these mixed aerosols during different stages of their hygroscopic cycle. In addition to the nitrate depletion often reported during the drying phase, this study has brought to light an intriguing observation: depletion of nitrate in the humidification phase as well, a phenomenon that has hitherto remained undocumented. For the mixed systems studied here, the extent of nitrate depletion follows the order Mg-MA (58%) > Ca-MA (43%) > Na-MA (15%). The comparatively huge forward shift in the acid displacement reaction equilibrium for the systems, Ca-MA and Mg-MA is driven by complexation. Our results highlight the profound effect of ion-molecular interactions on the acid displacement reaction equilibria in aerosols.
混合气溶胶中的化学转化会改变颗粒物的物理性质。硝酸盐和水溶性二羧酸,如丙二酸(MA),是环境气溶胶颗粒的主要成分。在它们的大气寿命期间,各种金属离子,如 Na、Ca、Mg 也成为这些复杂气溶胶系统的一部分。共存的离子和分子物种之间的相互作用控制着气溶胶颗粒中的化学变化。在这项工作中,我们提供了一个关于金属离子特性(Na、Ca、Mg)对 NaNO3-MA、Ca(NO3)2-MA 和 Mg(NO3)2-MA 混合无机-有机气溶胶中离子-分子相互作用引起的这种化学变化的影响的比较说明。原位微拉曼光谱使我们能够获得关于有机盐形成的分子水平的见解,并同时估计这些混合气溶胶在其吸湿循环的不同阶段中硝酸盐的消耗。除了在干燥阶段经常报道的硝酸盐消耗外,这项研究还揭示了一个有趣的观察结果:在加湿阶段也会消耗硝酸盐,这一现象迄今尚未有记录。对于研究的混合系统,硝酸盐消耗的程度遵循 Mg-MA(58%)> Ca-MA(43%)> Na-MA(15%)的顺序。对于 Ca-MA 和 Mg-MA 系统,酸取代反应平衡的向前巨大移动是由络合作用驱动的。我们的结果强调了离子-分子相互作用对气溶胶中酸取代反应平衡的深远影响。