首页> 外文期刊>Journal of Petroleum Science & Engineering >Operation of a MEG pilot regeneration system for organic acid and alkalinity removal during MDEA to FFCI switchover
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Operation of a MEG pilot regeneration system for organic acid and alkalinity removal during MDEA to FFCI switchover

机译:MDEA在MDEA到FFCI切换期间有机酸和碱度去除的MEG导频再生系统的操作

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The switch over from pH stabilisation using MDEA to film forming corrosion inhibitors (FFCI) may be beneficial following formation water breakthrough during hydrocarbon transportation and processing to prevent scaling at elevated pH and to extend the operational lifespan of a field. Where formation water is present, organic acids including acetic can be expected within MEG regeneration systems and can impose a corrosion risk together with carbon dioxide. A case study was performed to evaluate the potential of simultaneous removal of organic acids and MDEA/alkalinity during the switch over from pH stabilisation to film forming corrosion inhibitors (FFCI). Experimental testing was conducted using a MEG pilot regeneration plant operated by the Curtin Corrosion Engineering Industry Centre. Sufficient removal of organic acids was achieved to prevent accumulation within the MEG regeneration loop and subsequent corrosion issues through distillation by lowering the pH of the rich glycol feed to six to promote removal of organic acids with the water distillate. Simultaneously, removal of MDEA and reduction of lean glycol alkalinity was achieved through the reclamation system to facilitate FFCI switchover more rapidly than a comparative industrial operational methodology.
机译:通过使用MDEA对成膜腐蚀抑制剂(FFCI)的PH稳定化的切换可能是在烃类运输和加工过程中形成水突破后是有益的,以防止在升高的pH下进行缩放并延长场景的操作寿命。在存在形成水的情况下,可以在MEG再生系统内预期包括醋酸的有机酸,并且可以与二氧化碳一起施加腐蚀风险。进行案例研究以评估在切换过程中同时除去有机酸和MDEA /碱度的可能性从pH稳定化到膜形成腐蚀抑制剂(FFCI)。使用由Curtin腐蚀工程行业中心操作的MEG试点再生厂进行了实验测试。实现了足够的有机酸去除以防止Meg再生环内积聚并通过将富乙二醇进料的pH降低至六个以促进用水馏分去除有机酸来蒸馏来积累。同时,通过回收系统实现了MDEA和减少贫二甲碱度的降低,以促进比对比产业运营方法更快地快速的FFCI切换。

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