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Optical investigation of gas-phase KCl/KOH sulfation in post flame conditions

机译:后火焰条件下气相KCl / KOH硫酸化的光学研究

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A counter-flow reactor setup was designed to investigate the gas-phase sulfation and homogeneous nucleation of potassium salts. Gaseous KOH and KCl were introduced into the post-flame zone of a laminar flat flame. The hot flame products mixed in the counter-flow with cold N-2, with or without addition of SO2. The aerosols formed in the flow were detected through Mie scattering of a 355 nm laser beam. The temperature distribution of the flow was measured by molecular Rayleigh scattering thermometry. From the temperature where nucleation occurred, it was possible to identify the aerosols formed. Depending on the potassium speciation in the inlet and the presence of SO2, they consisted of K2SO4, KCl, or K2CO3, respectively. The experiments showed that KOH was sulphated more readily than KCl, resulting in larger quantities of aerosols. The sulfation process in the counterflow setup was simulated using a chemical kinetic model including a detailed subset for the Cl/S/K chemistry. Similar to the experimental results, much more potassium sulfate was predicted when seeding KOH compared to seeding KCl. For both KOH and KCl, sulfation was predicted to occur primarily through the reactions among atomic K, O-2 and SO2, forming KHSO4 and K2SO4. The higher propensity for sulfation of KOH compared to KCl was mostly attributed to the lower thermal stability of KOH, facilitating formation of atomic K. According to the model, sulfation also happened through SO3, especially for KCl (KCl -> KSO3Cl -> K2SO4).
机译:设计了逆流反应器装置,以研究钾盐的气相硫酸化和均相成核。将气态KOH和KCl引入层流平焰的火焰后区域。在添加或不添加SO2的情况下,热火焰产物与N-2逆流混合。通过355 nm激光束的米氏散射检测流中形成的气溶胶。流动的温度分布通过分子瑞利散射测温法测量。从发生形核的温度,可以确定形成的气溶胶。取决于入口处的钾形态和SO2的存在,它们分别由K2SO4,KCl或K2CO3组成。实验表明,KOH比KCl更容易被硫酸化,从而产生大量的气溶胶。使用化学动力学模型模拟了逆流装置中的硫酸化过程,该化学动力学模型包括Cl / S / K化学的详细子集。与实验结果相似,当播种KOH时,预计比播种KCl硫酸钾更多。对于KOH和KCl,预计主要通过原子K,O-2和SO2之间的反应发生硫酸化,形成KHSO4和K2SO4。与KCl相比,KOH的硫酸化倾向较高,主要归因于KOH的热稳定性较低,从而促进了原子K的形成。根据该模型,硫酸盐也通过SO3发生,特别是对于KCl(KCl-> KSO3Cl-> K2SO4) 。

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