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Characteristics of CO2 Hydrate Production with Mechanical Enhancement

机译:机械强化生产CO2水合物的特征

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It is a challenge technique to capture and storageCO2 by hydrate crystallization. In order to increase the hydrate formation rate and decrease the energy consumption, the effect of different stirring times on CO2hydrate formation was carried out experimentally in a small scale reactor. The results showed that the stirring could improve the CO2 gas dissolution rate effectively during the hydrate formation process. CO2 gas reached dissolution saturation in only three minutes with the stirring rate of250r/min, while this process required about 100 minutes without stirring. In addition, it was found that stirring is extremely favorable for the hydrate formation when it occurs during the temperature cooling down process. With40-munite stirring in the temperature cooling down process, the hydrate formation showed almost the same effect to that introduced by 200 minutes stirring, and the energy consumption was reduced significantly.
机译:通过水合物结晶捕获和储存CO2是一项挑战性技术。为了提高水合物的生成速率并降低能耗,在小型反应器中实验了不同搅拌时间对CO2水合物生成的影响。结果表明,搅拌可有效提高水合物形成过程中CO2气体的溶解速度。 CO2气体在三分钟内以250r / min的搅拌速度达到溶解饱和,而此过程需要约100分钟而不搅拌。另外,发现搅拌在温度冷却过程中发生时对于水合物的形成是非常有利的。在温度冷却过程中搅拌40分钟,水合物的形成几乎与搅拌200分钟引入的效果相同,并且能量消耗显着降低。

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