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A study of the dissociative recombination of CaO+ with electrons: Implications for Ca chemistry in the upper atmosphere

机译:CaO +与电子的解离重组研究:对高层大气中Ca化学的影响

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摘要

The dissociative recombination of CaO+ ions with electrons has been studied in a flowing afterglow reactor. CaO+ was generated by the pulsed laser ablation of a Ca target, followed by entrainment in an Ar+ ion/electron plasma. A kinetic model describing the gas‐phase chemistry and diffusion to the reactor walls was fitted to the experimental data, yielding a rate coefficient of (3.0 ± 1.0) × 10−7 cm3 molecule−1 s−1 at 295 K. This result has two atmospheric implications. First, the surprising observation that the Ca+/Fe+ ratio is ~8 times larger than Ca/Fe between 90 and 100 km in the atmosphere can now be explained quantitatively by the known ion‐molecule chemistry of these two metals. Second, the rate of neutralization of Ca+ ions in a descending sporadic E layer is fast enough to explain the often explosive growth of sporadic neutral Ca layers.
机译:在流动的余辉反应器中研究了CaO + 离子与电子的解离重组。 CaO的脉冲激光烧蚀产生CaO + ,然后夹带在Ar + 离子/电子等离子体中。实验数据拟合了描述气相化学反应和向反应器壁扩散的动力学模型,得出的速率系数为(3.0±1.0)×10 −7 cm 3 molecule −1 s −1 这个结果有两个大气意义。首先,现在可以定量地解释令人惊讶的观察结果:在大气中90至100 km之间,Ca + / Fe + 比是Ca / Fe的〜8倍之多。这两种金属的已知离子分子化学。其次,在零星的E层下降中,Ca + 离子的中和速度足够快,足以解释零星的中性Ca层的爆炸性增长。

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