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首页> 外文期刊>The Journal of Chemical Thermodynamics >Phase equilibrium condition measurements in nitrogen and air clathrate hydrate forming systems at temperatures below freezing point of water
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Phase equilibrium condition measurements in nitrogen and air clathrate hydrate forming systems at temperatures below freezing point of water

机译:低于水冰点的温度下,氮和空气包合物水合物形成系统中的相平衡条件测量

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摘要

Contained in this paper are the three phase equilibrium conditions of the (ice + clathrate hydrate + guest-rich) vapour in the (nitrogen + water) and the modelled (air + water) systems at temperatures below the freezing point of water. The precise determination of the equilibrium conditions in those systems are of importance for the analysis of the past climate change using the cored samples from the ice sheets at Antarctica and Greenland because the air hydrates keep the ancient climate signals. The mole ratio of the modelled air composed of nitrogen and oxygen is 0.790:0.210. The equilibrium conditions were measured by the batch, isochoric procedure. The temperature range of the measurements in the nitrogen hydrate forming system is (244.05 < T < 266.55) K and the corresponding equilibrium pressure range is (7.151 < p < 12.613) MPa. The temperature range of the measurements in the modelled air hydrate forming system is (242.55 < T < 267.85) K, and the corresponding equilibrium pressure range is (6.294 < p < 12.144) MPa. The data obtained quantitatively compared with the previously reported data.
机译:本文包含的是(冰+笼形水合物+富客)蒸气(氮+水)和模型化的(空气+水)系统在低于水冰点的温度下的三相平衡条件。在这些系统中,精确确定平衡条件对于使用南极洲和格陵兰岛冰盖的核心样品分析过去的气候变化非常重要,因为空气中的水合物会保留古老的气候信号。由氮气和氧气组成的模型空气的摩尔比为0.790:0.210。平衡条件通过间歇等速程序进行测量。氮水合物形成系统中测量的温度范围为(244.05

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