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首页> 外文期刊>Journal of engineering thermophysics >Effect of Diameter of Granules on Dissociation of Methane Hydrate
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Effect of Diameter of Granules on Dissociation of Methane Hydrate

机译:颗粒直径对甲烷水合物解离的影响

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摘要

The kinetics of dissociation of methane hydrate in air at an external pressure of 1 bar was experimentally studied. It is shown that to describe the mechanism of dissociation of gas clathrate, it is necessary to take into account not only the degree of deviation of temperature and pressure from equilibrium values, but also the diameter of granules. As the diameter decreases, the rate of decomposition of methane hydrate increases significantly. Change in the grain size affects formation of pores and dissociation. The experiment demonstrated a self-preservation mechanism for granule diameters of more than 1 mm. In the case of powder with an average diameter of less than 0.3 mm, there was no self-preservation. The rate of dissociation depends on the combined effect of diffusion, crystallization, and creep.
机译:实验研究了在1巴外压力下空气中甲烷水合物的解离的动力学。 结果表明,为了描述气体包合物的解离机制,不仅需要从平衡值的温度和压力的偏差程度,而且需要考虑颗粒的直径。 随着直径降低,甲烷水合物的分解速率显着增加。 晶粒尺寸的变化会影响孔隙的形成和解离。 实验表明,用于颗粒直径大于1mm的自我保存机制。 在平均直径小于0.3mm的粉末的情况下,没有自保。 解离率取决于扩散,结晶和蠕变的组合效果。

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