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Surface modification of mineral dust particles by sulphuric acid processing: implications for ice nucleation abilities

机译:硫酸处理的矿物粉尘颗粒的表面改性:冰核能力的影响

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The ability of coated mineral dust particles to act as ice nuclei (IN) was investigated at LACIS (Leipzig Aerosol Cloud Interaction Simulator) during the FROST1- and FROST2-campaigns (Freezing of dust). Sulphuric acid was condensed on the particles which afterwards were optionally humidified, treated with ammonia vapour and/or heat. By means of aerosol mass spectrometry we found evidence that processing of mineral dust particles with sulphuric acid leads to surface modifications of the particles. These surface modifications are most likely responsible for the observed reduction of the IN activation of the particles. The observed particle mass spectra suggest that different treatments lead to different chemical reactions on the particle surface. Possible chemical reaction pathways and products are suggested and the implications on the IN efficiency of the treated dust particles are discussed.
机译:在Frost1和Frost2-竞选期间,在Lacis(Leipzig气溶胶云相互作用模拟器中涂覆矿物粉尘颗粒作为冰核(IN)的能力(冻结灰尘)。硫酸在颗粒上缩合,然后任选地湿化,用氨蒸气和/或热处理。通过气溶胶质谱,我们发现有证据表明,用硫酸加工矿物粉尘颗粒导致颗粒的表面改性。这些表面修饰最可能负责观察到的颗粒活化的减少。观察到的粒子质谱表明不同的处理导致颗粒表面上的不同化学反应。建议可能的化学反应途径和产品,并讨论了对经处理的粉尘颗粒的效率的影响。
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