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Heterogeneous and multiphase formation pathways of gypsum in the atmosphere

机译:大气中石膏的非均相和多相形成途径

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摘要

Gypsum is a major sulphur-containing component of atmospheric particulate matter. To date, however, its formation pathways in the atmosphere are still not well known. In this study, several potentially important formation pathways of gypsum in atmospheric aerosols are proposed. We found that gypsum was formed in the humidifying-dehumidifying process of mixed sulphate and calcium salts. A deliquescent layer is crucial for the formation of gypsum from Ca~(2+) and SO4~(2-) ions. In particular, the presence of hygroscopic components, such as (NH4)2SO4 and Ca(NO3)2, is necessary for the conversion of calcium carbonate (CaCO3) upon heterogeneous reaction of either SO2 + O3 or SO2 + NO2 as well as anhydrous calcium sulphate (CaSO4) to form gypsum (CaSO4-2H20) under ambient conditions. This study provides definitive evidence that synergistic effects in the physical and chemical processing of aerosol particles have a significant effect on their final chemical composition, mixing state and hygroscopic behaviour which dictates the environmental and climate impacts of the resulting aerosol.
机译:石膏是大气颗粒物的主要含硫成分。然而,迄今为止,其在大气中的形成途径仍不为人所知。在这项研究中,提出了几种在大气气溶胶中潜在重要的石膏形成途径。我们发现石膏是在硫酸盐和钙盐混合的加湿除湿过程中形成的。潮解层对于由Ca〜(2+)和SO4〜(2-)离子形成石膏至关重要。特别是,当SO2 + O3或SO2 + NO2与无水钙发生异质反应时,碳酸钙(CaCO3)的转化需要存在(NH4)2SO4和Ca(NO3)2等吸湿成分。硫酸盐(CaSO4)在环境条件下形成石膏(CaSO4-2H20)。这项研究提供了确凿的证据,表明在气溶胶颗粒的物理和化学加工过程中的协同效应对其最终化学组成,混合状态和吸湿性有显着影响,从而决定了所产生气溶胶对环境和气候的影响。

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