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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Absolute photolysis cross-sections for NaHCO_3, NaOH, NaO, NaO_2 and NaO_3: implications for sodium chemistry in the upper mesosphere
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Absolute photolysis cross-sections for NaHCO_3, NaOH, NaO, NaO_2 and NaO_3: implications for sodium chemistry in the upper mesosphere

机译:NaHCO_3,NaOH,NaO,NaO_2和NaO_3的绝对光解截面:对上部中层钠化学的影响

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摘要

The compounds NaHCO_3, NaOH, NaO and NaO_2 are formed from meteor-ablated Na in the upper mesosphere. This paper reports the absolute photolysis cross-sections of these species at selected wavelengths between 193 and 423 nm, measured by laser photofragment spectroscopy. The sodium species were produced in both a slow flow reactor and a fast flow tube, by the addition of appropriate reagents to a flow of atomi Na from a heat-pipe oven. The pulsed photolysis source was either a Raman-shifted excimer laser or a Nd:YAG laser, and the resulting Na atoms were probed by laser induced fluorescence at 589.0 nm (Na( 3 ~2P_(3/2)-~2s_(1/2))). Measurements are reported at 200 and 300 K. A limited set of cross-sections for NaCO-3 was also obtained at 300 K. In the case of NaHCO_3, NaOH and NaO, theonset of photolysis is close to the thermodynamic threshold calculated from quantum theory. Calculations using the CI-singles method predict excited states whose relative energies are in sensible accord with the bands in the experimental spectra, but which are too high in energy with respect to their respective ground states. Photodissociation coefficients are then derived which are appropriate for modelling sodium chemistry in the upper mesosphere. Photolysis of the major sodium reservoir species. NaHCO_3, is shown to be an important route for recycling this compound, and is also predicted to produce the HCO_3 radical, which should be stable under mesospheric conditions.
机译:化合物NaHCO_3,NaOH,NaO和NaO_2由上部中层流星烧蚀的Na形成。本文报道了这些物种在193至423 nm之间选定波长处的绝对光解截面,通过激光碎裂光谱法测量。通过向热管炉中的atomi Na流中添加适当的试剂,可以在慢速反应器和快流管中生产钠物质。脉冲光解源是拉曼位移准分子激光或Nd:YAG激光,然后通过激光诱导的589.0 nm荧光(Na(3〜2P_(3/2)-〜2s_(1 / 2)))。据报道在200 K和300 K时测量。在300 K时也获得了NaCO-3的有限横截面。在NaHCO_3,NaOH和NaO的情况下,光解的开始接近于根据量子理论计算的热力学阈值。 。使用CI单值方法进行的计算可以预测激发态,其相对能量与实验光谱中的能带合理相符,但相对于其各自的基态而言能量过高。然后推导光解离系数,该系数适合于模拟中高层大气中的钠化学反应。主要钠盐储集层物种的光解作用。已显示NaHCO_3是回收该化合物的重要途径,并且还预测会产生HCO_3自由基,该自由基应在中层条件下稳定。

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