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用于天然气和甲烷水合物动力学水合物抑制的聚(2-氨基-2-恶唑啉)的结构设计

Structural Design of Poly(2-amino-2-oxazoline)s for Kinetic Hydrate Inhibition of Natural Gas and Methane Hydrates.

作者信息

Kelland Malcolm A, Jana Somdeb, Kiær Julie, Salihovic Ajla, Pomicpic Janronel, Hoogenboom Richard

机构信息

Department of Chemistry, Bioscience and Environmental Engineering, Faculty of Science and Technology, University of Stavanger, N-4036 Stavanger, Norway.

Supramolecular Chemistry Group, Centre of Macromolecular Chemistry, Department of Organic and Macromolecular Chemistry, Ghent University, Krijgslaan 281-Building S4, B-9000 Ghent, Belgium.

出版信息

ACS Omega. 2025 Apr 29;10(18):18690-18699. doi: 10.1021/acsomega.5c00143. eCollection 2025 May 13.

Abstract

Kinetic hydrate inhibitors (KHIs) are chemical substances that prevent gas hydrate plugging of oil and gas production flow lines. The main ingredient in a KHI formulation is one or more water-soluble amphiphilic polymers. We recently presented the first results on the KHI performance of a new class of amphiphilic polymers, namely, poly(2-dialkylamino-2-oxazoline)s, which showed good potential as KHIs. In this work, this class of novel KHIs has been investigated in more detail using both structure I and structure II hydrate-forming gases to optimize the polymer structure for best performance and with higher cloud point temperature for wider field applications. All polymers were tested in high-pressure rocking cells using the slow (1 °C/h) constant cooling test method. The best poly(2-dialkylamino-2-oxazoline)s tested at 2500 ppm contained 5-membered and 6-membered heterocyclic pendant groups and performed similarly to a commercial KHI polymer, poly(-vinyl caprolactam) (PVCap), with both gases and with higher cloud point temperature ( ) than PVCap, thereby expanding the workability temperature range. The effect of salinity on KHI performance has also been studied, along with high flash point glycol solvents as synergists in combination with the best performing polymers. The onset temperature using the 2500-5000 ppm polymer could further be lowered by about 2-3 °C by the addition of 5000 ppm butylated glycol ethers. Hence, this work demonstrates the broader potential of poly(2-dialkylamino-2-oxazoline)s as KHIs.

摘要

动力学水合物抑制剂(KHIs)是一种能够防止油气生产管道被气体水合物堵塞的化学物质。KHI配方中的主要成分是一种或多种水溶性两亲聚合物。我们最近首次公布了一类新型两亲聚合物——聚(2-二烷基氨基-2-恶唑啉)作为KHI的性能研究结果,这类聚合物显示出作为KHI的良好潜力。在这项工作中,我们使用结构I和结构II水合物形成气体对这类新型KHI进行了更详细的研究,以优化聚合物结构以实现最佳性能,并提高浊点温度以扩大现场应用范围。所有聚合物均在高压摇摆釜中采用缓慢(1℃/小时)恒定冷却试验方法进行测试。测试的浓度为2500 ppm时性能最佳的聚(2-二烷基氨基-2-恶唑啉)含有五元环和六元环杂环侧基,在两种气体测试中表现与市售KHI聚合物聚(乙烯基己内酰胺)(PVCap)相似,且浊点温度比PVCap更高,从而扩大了可操作温度范围。还研究了盐度对KHI性能的影响,以及高闪点二醇溶剂与性能最佳的聚合物组合作为增效剂的情况。添加5000 ppm的丁基化二醇醚可使使用浓度为2500 - 5000 ppm聚合物时的起始温度进一步降低约2 - 3℃。因此,这项工作证明了聚(2-二烷基氨基-2-恶唑啉)作为KHI具有更广泛的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/afe6/12079221/87f0e0be8a18/ao5c00143_0001.jpg

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