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Tetrahydrofuran hydrate crystal growth inhibition by hyperbranched poly(ester amide)s

机译:超支化聚(酯酰胺)抑制四氢呋喃水合物晶体生长

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Kinetic hydrate inhibitors (KHIs) are water-soluble polymers designed to delay gas hydrate formation in gas and oilfield operations. Inhibition of growth of gas hydrate crystals is one of the mechanisms by which KHIs have been proposed to act. One class of commercial KHIs is the hyperbranched poly(ester amide)s. We have investigated the ability of a range of structurally different hyperbranched poly(ester amide)s to inhibit the crystal growth of tetrahydrofuran (THF) hydrate which forms a Structure 11 clathrate hydrate, the most common gas hydrate structure encountered in the upstream oil and gas industry. The results indicate that there is an optimum size of hydrophobic groups attached to the succinyl part of the polymer, which gives best crystal growth inhibition. However, total inhibition was impossible to achieve even at a concentration of 8000 ppm of one of the best polymers at a subcooling of 3.4 degrees C, tentatively suggesting that polymer adsorption onto natural gas hydrate crystal surfaces is probably not the primary mechanism of kinetic inhibition operating in field applications with this class of KHI.
机译:动力学水合物抑制剂(KHIs)是水溶性聚合物,旨在延迟天然气和油田作业中天然气水合物的形成。气体水合物晶体生长的抑制是已提出KHI起作用的机制之一。一类商业KHI是超支化的聚(酯酰胺)。我们研究了一系列结构不同的超支化聚(酯酰胺)抑制四氢呋喃(THF)水合物晶体生长的能力,四氢呋喃(THF)水合物形成结构11笼形水合物,这是上游石油和天然气中最常见的气体水合物结构行业。结果表明,在聚合物的琥珀酰基部分上连接的疏水基团的大小最佳,从而可以最佳地抑制晶体生长。但是,即使在3.4°C的过冷条件下,即使在最佳聚合物之一的浓度为8000 ppm时,也无法实现完全抑制,这初步表明聚合物吸附在天然气水合物晶体表面上可能不是动力学抑制操作的主要机理。在此类KHI的现场应用中。

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