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Preventing Hydrate Adhesion with Magnetic Slippery Surfaces

机译:防止磁滑表面的水合物粘附

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Hydrate formation is a common challenge in the oil and gas industry when natural gas is transported under cold conditions in the presence of water. Coatings are one of the solutions that have shown to be a promising approach to address this challenge. However, this strategy suffers from the intrinsic existence of a solid–liquid interface causing a high rate of hydrate nucleation and high hydrate adhesion strength. This proof-of-concept study highlights the performance of a magnetic slippery surface to prevent hydrate adhesion at atmospheric pressure using tetrahydrofuran hydrates. The coating consisted of a hydrocarbon-based magnetic fluid, which was applied to a metal surface to create an interface that lowered the hydrate adhesion strength on the surface. The performance of these new surfaces under static and dynamic (under fluid flow) conditions shows that the magnetic coating gel can be a potential inhibitor for hydrate adhesion as it reduced the torque value after the formation of hydrates.
机译:当天然气在寒冷条件下在有水的情况下运输时,水合物的形成是石油和天然气工业中的常见挑战。涂料是解决这一挑战的一种可行方法。但是,这种策略存在固液界面的固有问题,导致高水合物成核速率和高水合物粘附强度。这项概念验证研究突出了磁性光滑表面在使用四氢呋喃水合物防止大气压下水合物粘附的性能。该涂层由基于碳氢化合物的磁性流体组成,将其涂在金属表面上以形成降低表面水合物粘附强度的界面。这些新表面在静态和动态(在流体流动条件下)的性能表明,磁性涂料凝胶可能是水合物粘附的潜在抑制剂,因为它降低了水合物形成后的扭矩值。

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