Atmospheric Chemistry and Aerosol Research Division, Chinese Research Academy of Environmental Science, Beijing 100012, China.
J Phys Chem A. 2010 Jan 14;114(1):387-96. doi: 10.1021/jp9068575.
Atmospheric aerosols formed via nucleation in the Earth's atmosphere play an important role in the aerosol radiative forcing associated directly with global climate changes and public health. Although it is well-known that atmospheric aerosol particles contain organic species, the chemical nature of and physicochemical processes behind atmospheric nucleation involving organic species remain unclear. In the present work, the interaction of common organic acids with molecular weights of 122, 116, 134, 88, 136, and 150 (benzoic, maleic, malic, pyruvic, phenylacetic, and tartaric acids) with nucleation precursors and charged trace species has been investigated. We found a moderate strong effect of the organic species on the stability of neutral and charged ionic species. In most cases, the free energies of the mixed H(2)SO(4)-organic acid dimer formation are within 1-1.5 kcal mol(-1) of the (H(2)SO(4))(NH(3)) formation energy. The interaction of the organic acids with trace ionic species is quite strong, and the corresponding free energies far exceed those of the (H(3)O(+))(H(2)SO(4)) and (H(3)O(+))(H(2)SO(4))(2) formation. These considerations lead us to conclude that the aforementioned organic acids may possess a substantial capability of stabilizing both neutral and positively charged prenucleation clusters, and thus, they should be studied further with regard to their involvement in the gas-to-particle conversion in the Earth's atmosphere.
大气气溶胶通过在地球大气中的成核作用形成,在与全球气候变化和公众健康直接相关的气溶胶辐射强迫中起着重要作用。尽管众所周知大气气溶胶粒子含有有机物质,但涉及有机物质的大气成核的化学性质和物理化学过程仍不清楚。在目前的工作中,研究了分子量为 122、116、134、88、136 和 150 的常见有机酸(苯甲酸、马来酸、苹果酸、丙酮酸、苯乙酸和酒石酸)与成核前体和带电痕量物质的相互作用。我们发现有机物质对中性和带电离子物质稳定性的影响适中。在大多数情况下,混合 H(2)SO(4)-有机酸二聚体形成的自由能在 (H(2)SO(4))(NH(3))形成能的 1-1.5 kcal mol(-1)范围内。有机酸与痕量离子物质的相互作用非常强,相应的自由能远远超过 (H(3)O(+))(H(2)SO(4))和 (H(3)O(+))(H(2)SO(4))(2)的形成。这些考虑使我们得出结论,上述有机酸可能具有稳定中性和正带电预成核团簇的实质性能力,因此,应该进一步研究它们在地球大气中气体到颗粒转化中的作用。