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Adsorption and adsorbate interaction at soot particle surfaces

机译:烟尘颗粒表面的吸附和吸附物相互作用

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Previously reported research, demonstrating a role of adsorbed molecular oxygen in the reaction of ozone with soot particles and in their hydration, has been extended to explore the interaction between O-2 and SO2, O-3, H2O, NH3, NO2 and NO at the soot surface as well as the effect of these adsorbates on each other. Electron paramagnetic resonance (EPR) and microgravimetry have revealed the extent of interactions between some competing reactants on soot. EPR has been used as a probe of the surface behavior of paramagnetic species (O-2, NO2, NO) through their effect on the intensity of a large signal which is the result of the high concentration of unpaired electrons in soots. The effects of diamagnetic reactants (H2O, NH3, SO2) also are measured through their influence on the paramagnetic adsorbates and thus on the EPR signal. Microgravimetric measurements of adsorption and changes in the mass resulting from surface reactions also have enabled interpretations of the behavior of reactants on soot particles. Details of the modes of adsorption of SO2, NO2 and NH3 on n-hexane soot have emerged from these measurements as well. (C) 1998 Elsevier Science Ltd. All rights reserved. References: 47
机译:先前报道的研究证明了吸附分子氧在臭氧与烟尘颗粒的反应及其水合中的作用,现已扩展到探索烟尘表面的O-2和SO2、O-3、H2O、NH3、NO2和NO之间的相互作用以及这些吸附物之间的相互作用相互影响。电子顺磁共振(EPR)和微重力法揭示了一些竞争反应物对烟尘的相互作用程度。EPR 已被用作顺磁性物质(O-2、NO2、NO)表面行为的探针,因为它们对大信号强度的影响,这是烟灰中未成对电子高浓度的结果。抗磁性反应物(H2O、NH3、SO2)的影响也是通过它们对顺磁吸附物的影响来测量的,从而对EPR信号的影响。吸附的微重测量和表面反应引起的质量变化也能够解释反应物对烟尘颗粒的行为。SO2、NO2 和 NH3 对正己烷烟尘的吸附模式的细节也从这些测量中浮出水面。(C) 1998 Elsevier Science Ltd.保留所有权利。[参考文献: 47]

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