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The vapor pressure of liquid and solid water phases at conditions relevant to the atmosphere

机译:液体和固体水阶段的蒸气压在与大气相关的条件下

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摘要

In the atmosphere, water can be present in liquid and solid phases, but the vapor phase is generally predominant. Condensed phases of water occur under a wide range of conditions, ranging from polar mesospheric clouds at the lowest atmospheric temperatures and at low pressure to the much warmer tropospheric clouds. The temperature range at which ice or water clouds are observed spans from T = 100 to 300 K with pressures ranging from about 10(-3) mbar to about 1 bar. Over this wide range, water is known to form several condensed phases, which can be separated into crystalline (hexagonal and stacking disordered ice) and noncrystalline phases (liquid and supercooled liquid water, amorphous solid water). We report on the vapor pressure of these water phases with a focus on metastable amorphous solid water and stacking disordered ice in the light of recent experimental findings and discuss possible implications for the atmosphere. We present evidence that supercooled liquid water and low density amorphous solid water do not belong to the same phase and therefore, no continuous vapor pressure curve can be given. Published under license by AIP Publishing.
机译:在大气中,水可以存在于液体和固相中,但气相通常是主要的。水的浓缩阶段发生在各种条件下,从最低大气温度和低压到更温暖的对流层云的极性态度云等。观察到冰或水云的温度范围从T = 100至300K的跨越,压力范围为约10(3)毫巴至约1巴。在这个宽范围内,已知水形成几个浓缩相,可以将其分成结晶(六边形和堆叠无序的冰)和非晶体相(液体和过冷液体水,无定形固体水)。我们报告了这些水阶段的蒸气压,重点是亚稳态无定形水和依次堆叠无序的冰,并讨论对大气可能的影响。我们提出了超冷却液体水和低密度无定形固体的证据不属于相同的相,因此,不能给出连续的蒸气压曲线。通过AIP发布在许可证下发布。

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