New Generation Squeezable Sulfide Inhibitor Successfully Averts Challenging Sulfide Scale Deposition in Permian Basin

C. Okocha, A. Kaiser, Shane Underwood, W. Samaniego, J. Wylde
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引用次数: 1

Abstract

Sulfide scales (zinc, lead and iron sulfide) are currently causing considerable production challenges as mature fields are kept operational, and as deeper-hotter reservoirs are been developed. An effective way to combat conventional scaling is to inject "squeeze" scale inhibitors into the formation which are then slowly released as production resumes, providing scale protection. This option has not been the case for sulfide scales due to formation kinetics and lack of suitable products. In this study we present two field cases where new generation squeezable sulfide inhibitors were deployed with clear success in inhibiting sulfide deposition and establishing stable production. Also presented are the development methods and chemical synthesis details for the development of a squeezable product. A novel fast screening technique is detailed as well as a new type of residual monitoring method for the polymeric species that inhibit the sulfide scales. In the Permian Basin, newly completed long horizontal wells in the Sprayberry Formation were on a constant rotation of work overs (every 3 to 5 days) due to severe zinc and iron sulfide deposition. Early squeezes performed with known phosphonate/ester scale inhibitors, and end-capped polymer were unsuccessful. A new generation of squeezable sulfide inhibitor was deployed and stabilized production as well as the scaling ion data. A unique and fast residual analysis methodology (using a specialized HPLC column) was developed as part of the squeezable sulfide inhibitor development project capable of providing a unique selectivity in a high TDS brine without interferences increasing residual monitoring and squeeze confidence. In the Williston basin many fields are known for their troubled history with iron sulfide. To date, the preferred option has been continuous well cleanout that impacts production, next generation squeezable sulfide inhibitor was deployed and it successfully increased productivity and eliminated well clean outs for the trialed wells. This technology summarized in the paper offers a substantial step change in the ability to protect against sulfide scale via squeeze application. These field treatments show that next generation squeezable inhibitors were successful in inhibiting sulfide scales with no observed formation damage, upset to process facilities during flow back, or decline in productivity.
新一代可挤压硫化物抑制剂成功避免了二叠纪盆地具有挑战性的硫化物垢沉积
硫化物结垢(锌、铅和铁硫化物)目前给成熟油田的生产带来了相当大的挑战,因为这些油田一直在运营,而且油藏的温度也越来越高。对抗常规结垢的有效方法是在地层中注入“挤压”阻垢剂,随着生产的恢复,这些阻垢剂会慢慢释放,起到保护结垢的作用。由于地层动力学和缺乏合适的产品,这种选择对于硫化物垢来说并不适用。在本研究中,我们介绍了两个油田案例,其中新一代可挤压硫化物抑制剂在抑制硫化物沉积和建立稳定生产方面取得了明显的成功。还介绍了可挤压产品的开发方法和化学合成细节。详细介绍了一种新型的快速筛选技术,以及一种新型的抑制硫化物结垢的聚合物残留监测方法。在二叠纪盆地,由于严重的硫化锌和铁沉积,Sprayberry地层新完井的长水平井需要不断轮换作业(每3至5天)。使用已知的膦酸酯阻垢剂和端封聚合物进行早期挤压均不成功。新一代可挤压硫化物抑制剂稳定了产量和结垢离子数据。作为可挤压硫化物抑制剂开发项目的一部分,开发了一种独特而快速的残留分析方法(使用专用的高效液相色谱柱),能够在高TDS盐水中提供独特的选择性,而不会干扰,从而提高残留监测和挤压信心。在威利斯顿盆地,许多油田因其与硫化铁的麻烦历史而闻名。到目前为止,首选的方法是连续洗井,这会影响产量,新一代可挤压硫化物抑制剂的使用成功地提高了产能,并消除了试验井的洗井问题。本文总结的这项技术通过挤压应用,大大提高了防止硫化物结垢的能力。这些现场处理表明,下一代可挤压抑制剂成功地抑制了硫化物结垢,没有观察到地层损害、返排过程中对工艺设施的破坏或产能下降。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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