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首页> 外文期刊>Journal of natural gas science and engineering >Waterborne polymers as kinetic/anti-agglomerant methane hydrate and corrosion inhibitors: A new and promising strategy for flow assurance
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Waterborne polymers as kinetic/anti-agglomerant methane hydrate and corrosion inhibitors: A new and promising strategy for flow assurance

机译:水性聚合物作为动力学/抗聚合物甲烷水合物和腐蚀抑制剂:一种新的和有前途的流量保证战略

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摘要

This study introduces a novel and promising strategy based on waterborne polymers for hydrate and corrosion risk management and incompatibility issues between them. The results demonstrated a good performance of waterborne polyurea/urethanes (WPUUs) in delaying the induction time (up to 17 times) and reducing the hydrate growth rate (up to 7.7 times) compared to water. Moreover, the hydrates formed in the WPUUs system at water-cut 60% were uniformly dispersed in the liquid phase like slurry and they are particularly appropriate for the flow in the pipelines. In addition, the weight loss, SEM-EDX, profilometer, and quantum chemical studies showed that the WPUUs suppress the corrosion process in a severely corrosive environment (2 M HCl). This research reports for the first time the satisfactory reasons for using waterborne polymers as a promising kinetic/anti-agglomerant methane hydrate and corrosion inhibitors and will develop new opportunities in the field of hydrate and corrosion risk management.
机译:本研究介绍了基于水性和腐蚀风险管理的水性聚合物的新颖和有前途的策略,以及它们之间的不相容性问题。结果表明,与水相比,水性聚脲/氨基甲酸(WPUUS)延迟诱导时间(最多17次)并降低水合物生长速率(高达7.7倍)的良好性能。此外,在水切口60%的WPUUS系统中形成的水​​合物均匀地分散在液相中,如浆料,它们特别适合于管道中的流动。此外,重量损失,SEM-EDX,型尺寸仪和量子化学研究表明,WPUUS在严重腐蚀性环境(2M HCl)中抑制了腐蚀过程。本研究报告了第一次使用水性聚合物作为有前途的动力学/抗聚合物甲烷水合物和腐蚀抑制剂的令人满意的原因,并将在水合物和腐蚀风险管理领域开辟新的机遇。

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