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首页> 外文期刊>Fuel >Effects of temperature and pressure on the methane hydrate formation with the presence of tetrahydrofuran (THF) as a promoter in an unstirred tank reactor
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Effects of temperature and pressure on the methane hydrate formation with the presence of tetrahydrofuran (THF) as a promoter in an unstirred tank reactor

机译:在无搅拌釜反应器中以四氢呋喃为促进剂的温度和压力对甲烷水合物形成的影响

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In this work, the effects of temperature and pressure on the methane hydrate formation and dissociation with the presence of 5.56 mol% THF solution in the quiescent condition is investigated. The experiments were conducted at 8 MPa and at 277.2, 283.2, 288.2 and 293.2 K. The results show that the methane uptake increased with the increase in the experimental temperature due to at the fact that higher experimental temperature showed the multiple hydrate nucleation and effective heat distribution to the surrounding. The experiment at 277.2 K showed the fastest induction time and shortest time to reach 90% of the methane uptake (t(90)). The highest methane uptake was observed at 293.2 K. Moreover, the effects of experimental over pressure on the methane hydrate formation was investigated by varying the pressure from 8 to 4 MPa at 288.2 K. The result showed that the pressure did not affect the methane uptake but the rate of formation at the higher pressure is higher than at lower pressure. Furthermore, this work reports the synergistic effects of kinetic promotion of methane hydrate formation by coupling THF with methyl ester sulfonate (MES) at 293.2 K. The results showed that the presence of MES increases both induction time and rate of hydrate formation. The dissociation experiment was conducted after the formation by increasing the temperature to 308.2 K. The results showed that up to 98% of methane could be recovered.
机译:在这项工作中,研究了温度和压力对在静止状态下存在5.56 mol%THF溶液的甲烷水合物形成和离解的影响。实验是在8 MPa和277.2、283.2、288.2和293.2 K的条件下进行的。结果表明,甲烷的吸收随着实验温度的升高而增加,这是由于较高的实验温度显示了多个水合物的成核作用和有效的热量。分布到周围。 277.2 K的实验显示出最快的诱导时间,最短的时间达到了甲烷吸收量的90%(t(90))。观察到最高的甲烷吸收量为293.2K。此外,通过在288.2 K下将压力从8 MPa改变为4 MPa,研究了实验超压对甲烷水合物形成的影响。结果表明,压力不影响甲烷的吸收但是在较高压力下的形成速率高于在较低压力下的形成速率。此外,这项工作报告了通过在293.2 K下将THF与甲酯磺酸盐(MES)偶联而动态促进甲烷水合物形成的协同效应。结果表明MES的存在会增加诱导时间和水合物形成速率。形成后通过将温度升至308.2 K进行离解实验。结果表明,可以回收高达98%的甲烷。

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