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Recalcitrance of gas hydrate crystals formed in the presence of kinetic hydrate inhibitors

机译:在动态水合物抑制剂存在下形成的气体水合物晶体的顽固性

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摘要

Kinetic hydrate inhibitors (KHIs) are used to manage the risk of gas hydrate plug formation in oil and gas transmission pipelines and facilities. However, under severe conditions, hydrates can be formed in the presence of these additives. It is important to understand how these inhibitors would affect gas hydrate remediation. Here, the impact of different concentrations of polyvinylcaprolactam (PVCap), Luvicap\uae Bio and type III antifreeze proteins (AFP III) on the dissociation of propane hydrate formed in the presence of these additives has been evaluated using a high pressure micro differential scanning calorimeter. Remarkably, hydrates formed in the presence of these inhibitors were dissociated at different temperatures than those expected from hydrate equilibrium calculations as well as at higher temperatures. However, gas hydrates formed in KHI-free solution melted at the equilibrium temperature and multiple-melting points were not observed. Interestingly, an increase in inhibitor concentration decreased the amount of gas hydrate that dissociated at the equilibrium temperature. Consequently, larger amounts of hydrate were dissociated at higher temperatures. These results indicate that since remediation of hydrates in the presence of KHIs requires higher melting temperatures, more energy is required to remove hydrates under these conditions. Such an effect should be considered in the design of processes for flow assurance.
机译:动力学水合物抑制剂(KHIs)用于管理油气输送管道和设施中天然气水合物塞形成的风险。然而,在苛刻的条件下,在这些添加剂的存在下会形成水合物。重要的是要了解这些抑制剂将如何影响天然气水合物的修复。在这里,已经使用高压微差示扫描量热仪评估了不同浓度的聚乙烯己内酰胺(PVCap),Luvicap \ uae Bio和III型抗冻蛋白(AFP III)对在这些添加剂存在下形成的丙烷水合物解离的影响。 。值得注意的是,在这些抑制剂的存在下形成的水合物在与水合物平衡计算所预期的温度不同的温度下以及在更高的温度下被解离。但是,在不含KHI的溶液中形成的气体水合物在平衡温度下熔化,没有观察到多个熔点。有趣的是,抑制剂浓度的增加减少了在平衡温度下解离的气体水合物的量。因此,大量的水合物在较高的温度下会解离。这些结果表明,由于在KHI存在下对水合物的修复需要更高的熔融温度,因此在这些条件下去除水合物需要更多的能量。在设计流程保证流程时应考虑这种影响。

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