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首页> 外文期刊>Journal of Applied Polymer Science >Thermal analysis of polymer-water interactions and their relation to gas hydrate inhibition
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Thermal analysis of polymer-water interactions and their relation to gas hydrate inhibition

机译:聚合物-水相互作用的热分析及其与天然气水合物抑制的关系

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Gas hydrates formed in oil production pipelines are crystalline solids where hydrocarbon gas molecules such as methane, propane, and their mixtures are trapped in a cagelike structure by hydrogen-bonded water molecules to form undesirable plugs. Methanol and glycol are currently used to prevent these plugs via thermodynamic inhibition. Small amounts of water-soluble polymers may provide an alternate approach for preventing gas hydrates. In this study, we expand the fundamental understanding of water-polymer systems with differential scanning calorimetry. Non-freezable bound water was used to quantify polymer-water interactions and relate them to the chemical structure for a series of polymers, including acrylamides, cyclic lactams, and n-vinyl amides. For good interactions, the water structure needs to be stabilized through hydrophobic interactions. An increased hydrophobicity of the pendant group also appears to favor polymer performance as a gas hydrate inhibitor. Good inhibitors, such as poly(diethyl acrylamide) and poly(N-vinyl caprolactam), also show higher heat capacities, which indicate higher hydrophobicity, than poor performers such as polyzwitterions, in which hydrophilicity dominated. The phase behavior and thermodynamic properties of dilute polymer solutions were also evaluated through measurements of the heat of demixing and lower critical solution temperature. (c) 2006 Wiley Periodicals, Inc.
机译:在采油管道中形成的天然气水合物是结晶性固体,其中的烃类气体分子(例如甲烷,丙烷)及其混合物被氢键合的水分子截留在笼状结构中,从而形成不良的堵塞物。当前使用甲醇和乙二醇通过热力学抑制来防止这些堵塞。少量的水溶性聚合物可提供防止气体水合物的替代方法。在这项研究中,我们通过差示扫描量热法扩展了对水聚合物体系的基本理解。不可冻结的结合水用于量化聚合物与水的相互作用,并将它们与一系列聚合物的化学结构相关,包括丙烯酰胺,环状内酰胺和正乙烯基酰胺。对于良好的相互作用,需要通过疏水相互作用来稳定水的结构。侧基的疏水性增加也似乎有利于聚合物作为气体水合物抑制剂的性能。良好的抑制剂(例如聚(二乙基丙烯酰胺)和聚(N-乙烯基己内酰胺))也比表现不佳的聚两性离子(其中亲水性占优势)表现出更高的热容量,这表明更高的疏水性。稀聚合物溶液的相行为和热力学性质也通过测量混合热和较低的临界溶液温度来评估。 (c)2006年Wiley Periodicals,Inc.

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