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The formation of meso- and macroporous gas hydrates

机译:中孔和大孔天然气水合物的形成

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摘要

We present results of experimental studies on the formation of gas hydrates (clathrates) at conditions of geophysical interest. Clathrate hydrates formed by a reaction of gas at ice Ih surfaces are always found to be mesoporous to macroporous with pores sizes between 100 to 400 nm and pore volumes of approximately 25-40% for CH4, Ar and Nz hydrate, and smaller pores of 20 to 100 nm with a porosity of approximately 10-20% for CO2 hydrate. The three-dimensional sponge-like microstructure occurs in single crystalline grains of typically a few mu m size and was observed by field-emission scanning electron microscopy. It forms over a wide range of p-T conditions below the ice Ih melting. The porous microstructure is stable for at least several months, even close to the clathrate decomposition, and is proposed to be formed by local differences in the energy balance between hydrate formation and ice decompositon. The results presented are considered of potential major importance for the understanding of the behaviour of natural gas hydrates found e.g. in polar ice sheets and permafrost regions, and also in some celestial bodies. [References: 20]
机译:我们提出了在地球物理关注条件下形成天然气水合物(clathrates)的实验研究结果。气体在冰Ih表面反应形成的笼形水合物通常被发现是介孔的到大孔,CH4,Ar和Nz水合物的孔尺寸在100至400 nm之间,孔体积约为25-40%,较小的孔为20至100nm,对于CO 2水合物的孔隙率约为10-20%。三维海绵状微观结构出现在通常为几微米大小的单晶粒中,并通过场发射扫描电子显微镜观察到。它在冰融化后的很宽的p-T条件下形成。多孔微结构至少在几个月内是稳定的,甚至接近于包合物的分解,并且被认为是由水合物形成和冰分解之间的能量平衡的局部差异形成的。提出的结果被认为对于理解发现的天然气水合物的行为具有潜在的主要重要性。在极地冰盖和永久冻土地区,以及在某些天体中。 [参考:20]

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