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Uptake and surface chemistry of SO_2 on natural volcanic dusts

机译:天然火山尘上SO_2的吸收和表面化学

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V-dust (v-dust) is a highly variable source of natural particles in the atmosphere, and during the period of high volcanic activity it can provide a large surface for heterogeneous interactions with other atmospheric compounds. Icelandic v-dust was chosen as a case study due to frequency of volcanic eruptions and high aeolian activity in the area. In this study, we focus on the kinetics and mechanism of the reaction of sulfur dioxide (SO2) with natural v-dust samples under atmospheric conditions using coated wall flow tube reactor and diffuse reflectance infrared Fourier transform spectroscopy (DRIFTS). Steady state uptake coefficients determined are in the range of 10(-9) to 10(-8) depending on the considered v-dust. Concomitantly with SO2 uptake, both sulfites and sulfates are monitored on the surface of v-dust, with sulfates being the final oxidation product, attesting of SO2 surface reaction. Surface hydroxyl groups play a crucial role in the conversion of SO2 to sulfites as evidenced from both flow tube and DRIFTS experiments. Based on these experimental results, a mechanism for SO2 interaction with different surface sites of v-dust is proposed and discussed. This study provides original insights in the kinetics of SO2 uptake under simulated atmospheric conditions and its mechanism and transformation on volcanic material. To that regards, it brings an accurate perspective on SO2 heterogeneous sinks in the atmosphere.
机译:V型粉尘(V型粉尘)是大气中自然颗粒的高度可变来源,在火山活动活跃期间,它可以提供一个较大的表面,用于与其他大气化合物的异质相互作用。由于该地区火山喷发的频率和该地区的高风速活动,因此选择冰岛V型粉尘作为案例研究。在这项研究中,我们重点研究了使用涂层壁流管反应器和漫反射红外傅里叶变换光谱法(DRIFTS)在大气条件下二氧化硫(SO2)与天然v型粉尘样品反应的动力学和机理。确定的稳态吸收系数在10(-9)到10(-8)的范围内,具体取决于考虑的v-尘埃。与SO2的吸收同时,在V型粉尘的表面上同时监测亚硫酸盐和硫酸盐,硫酸盐是最终的氧化产物,证明了SO2表面反应。流量管和DRIFTS实验均表明,表面羟基在SO2转化为亚硫酸盐中起着至关重要的作用。基于这些实验结果,提出并讨论了SO2与v型粉尘不同表面部位相互作用的机理。这项研究为模拟大气条件下的SO2吸收动力学及其在火山物质上的转化机理提供了独到的见解。就此而言,它为大气中的SO2异质汇提供了准确的视角。

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