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Study of the Gas Hydrate Anti-agglomerant Performance of a Series of n-Alkyl-tri(n-butyl)ammonium Bromides

机译:一系列N-烷基 - 三(正丁基)溴化铵的气水合物抗聚合物性能研究

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Plugging of flow lines by gas hydrates is a costly and challenging problem for the oil and gas industry. One of the options available is the injection of anti-agglomerant (AA) low-dosage hydrate inhibitor (LDHI). LDHIs are injected in much lower concentration and amount in comparison to thermodynamic hydrate inhibitors (THIs). Quaternary ammonium surfactants currently dominate the AA market. In this paper, we report the first systematic study of laboratory tests on single-tail quaternary tributylammonium bromide surfactants for their ability to prevent structure II gas hydrate agglomeration in high-pressure rocker cells. The effect on AA performance by varying the alkyl chain length from 8 to 18 carbon atoms and the effect of salinity have been investigated. It was shown that there is an optimum alkyl tail chain length for the anti-agglomerating efficacy of this surfactant class and that increased salinity improves the AA performance. The performance of the AAs could also be further improved by the addition of the anionic surfactant, sodium dodecyl sulfate (SDS), particularly at low salinity.
机译:气体水合物的流线堵塞是石油和天然气工业的昂贵和挑战性问题。其中一种可用的可用选择是注射抗凝聚(AA)低剂量水合物抑制剂(LDHI)。与热力学水合物抑制剂(这)相比,LDH注入低得多的浓度和量。季铵表面活性剂目前占主导地位AA市场。在本文中,我们报告了对单尾季丁基溴化铵表面活性剂的第一个系统研究,以防止高压摇杆细胞中的结构II气水合物附聚的能力。研究了对AA性能的影响,通过改变8至18个碳原子的烷基链和盐度的作用。结果表明,该表面活性剂级别的抗聚集功效存在最佳烷基尾链长度,并且增加的盐度改善了AA性能。通过添加阴离子表面活性剂,十二烷基硫酸钠(SDS),特别是在低盐度下,也可以进一步改善AA的性能。

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