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H2O Adsorption on Smectites: Application to the Diurnal Variation of H2O in the Martian Atmosphere

机译:蒙脱石上的H2O吸附:在火星大气中H2O的日变化中的应用

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摘要

Observations of the Martian planetary boundary layer lead to interpretations that are baffling and contradictory. In this paper, we specifically address the question of whether or not water vapor finds a substantial diurnal reservoir in the Martian regolith. To address this issue, we have measured H2O adsorption kinetics on SWy-1, a Na-rich montmorillonite from Wyoming. The highest-temperature (273 K) data equilibrates rapidly. Data gathered at realistic H2O partial pressures and temperatures appropriate to early morning show two phenomena that preclude a significant role for smectites in diurnally exchanging a large column abundance. First, the equilibration timescale is longer than a sol. Second, the equilibrium abundances are a small fraction of that predicted by earlier adsorption isotherms. The explanation for this phenomenon is that smectite clay actually increases its surface area as a function of adsorptive coverage. At Mars-like conditions, we show that the interlayer sites of smectites are likely to be unavailable.
机译:对火星行星边界层的观测导致令人困惑和矛盾的解释。在本文中,我们专门解决水蒸气是否在火星re石中找到大量的昼夜储层的问题。为了解决这个问题,我们在怀俄明州的一种富含Na的蒙脱土SWy-1上测量了H2O的吸附动力学。最高温度(273 K)数据迅速达到平衡。在适合于清晨的实际H2O分压和温度下收集的数据显示出两种现象,这些现象排除了蒙脱石在昼夜交换大柱丰度方面的重要作用。首先,平衡时间尺度比溶胶更长。其次,平衡丰度只是早期吸附等温线预测的丰度的一小部分。对此现象的解释是,绿土粘土实际上根据吸附覆盖率增加了其表面积。在类似火星的条件下,我们表明蒙脱石的中间层位置可能不可用。

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