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Relationship between Droplet pH and Aerosol Dissolution Kinetics: Effect of Incorporated Aerosol Particles on Droplet pH during Cloud Processing

机译:液滴pH值与气溶胶溶解动力学之间的关系:在云处理过程中掺入的气溶胶颗粒对液滴pH值的影响

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The effect of incorporated aerosols on droplet pH was investigated by dissolution experiments on various particle types. These experiments conducted in an open-flow system show that the pH changes induced by aerosol solubilisation last up to 30 min, in the range of a typical droplet lifetime. These pH changes depend upon the initial pH of the experiment, i.e., the pH at cloud condensation. In the pH range between 3 and 5, the pH varies the most when it is high, since the base agents leached from the particles are neutralised by the protons present in the aqueous phase. A relationship between the neutralising capacity of the aerosol (NCA), i.e., the amount of uncompensated base species, and the pH after neutralisation has been found. Other experiments show that the NCA is related to the aerosol composition: silicates present more or less pronounced NCA, whereas C graphite presents a negative NCA, i.e., an acidifying capacity. The aerosol composition can be modified during cloud evapocondensation, notably by the addition of sulphate or sulphuric acid to the aerosol surface. NCA modification with cloud processing is observed when the amount of dissolved acid is larger than the neutralising capacity of the aerosol, i.e., when the droplet pH is less than a compensation pH characteristic of the aerosol type.
机译:通过对各种颗粒类型的溶解实验研究了掺入的气溶胶对液滴pH的影响。在开放流系统中进行的这些实验表明,在典型的液滴寿命范围内,由气溶胶溶解引起的pH值变化可持续长达30分钟。这些pH变化取决于实验的初始pH,即云凝结时的pH。在3到5的pH范围内,pH值高时变化最大,因为从颗粒中浸出的碱被水相中存在的质子中和。已经发现气溶胶(NCA)的中和能力,即未补偿的碱种类的量与中和后的pH之间的关系。其他实验表明,NCA与气溶胶组成有关:硅酸盐或多或少地表现出明显的NCA,而C石墨呈现出负的NCA,即酸化能力。可以在云团蒸发过程中改变气溶胶成分,特别是通过向气溶胶表面添加硫酸盐或硫酸来进行修改。当溶解酸的量大于气溶胶的中和能力时,即,当液滴的pH值小于气溶胶类型的补偿pH特性时,会观察到用云处理进行的NCA改性。

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