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Field-Detectable Scale Inhibitor for Severe Oilfield Environments

机译:用于严苛油田环境的现场可检测的比例抑制因素

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The formation of sulfate and carbonate salts of barium and calcium during oil production and stimulation operations can result in blocked pore throats in the near wellbore region,narrowed production tubing, deposits on equipment,and in more serious cases,formation damage.Polymeric scale inhibitors are commonly used to prevent or slow this process,but one limitation of scale inhibitors is that they must be used at or above the polymer’s minimum inhibitor concentration(MIC).Laboratory methods for determining the MIC are well known;however,determining when the scale inhibitor has been depleted below the MIC can prove challenging.One way to combat this is to continuously treat a producing well, but this results in additional chemical consumption and higher operating costs. Polymeric scale inhibitors have been developed that contain detectable tags,allowing the residual polymer concentration to be monitored and reducing the chance of an underdose or overdose.This approach could potentially reduce operating costs;however,sophisticated and time-consuming offsite laboratory analyses,such as ICP or other spectroscopy methods,are required to detect the tags–time during which flow assurance can be compromised. This paper reports an alternative tagged polymeric scale inhibitor that is easily detected by a simple in-field titration and provides outstanding carbonate and sulfate inhibition within favorable cost con-straints.Additionally,the new novel tagged scale inhibitor is anticipated to be more environmentally friendly than phosphate-based scale inhibitors,a growing demand in the oil and gas industry.Analyses such as static jar tests and dynamic scale loop(DSL)testing were used to evaluate the scale inhibition efficiency.The performance of the new scale inhibitor versus commercially available scale inhibitor(SI) was highlighted by the DSL,where the MIC was determined to be 20 ppm versus 80 ppm for two widely used scale inhibitors in a barium sulfate scaling brine.The dual benefits of in-field detection and excellent scale inhibition make this alternative tagged scale inhibitor a promising and cost effective addition to the oil and gas industry.
机译:钡和钙的硫酸盐和碳酸盐的过程中的石油生产和增产操作形成可以导致在近井筒区域阻塞孔喉,变窄生产管道,设备上沉积,并在更严重的情况下,形成damage.Polymeric水垢抑制剂是通常用于防止或减缓这种过程,但水垢抑制剂的一个限制是,它们必须在或聚合物的最小抑制剂浓度(MIC)的上方用于确定MIC。实验室方法是众所周知的;然而,确定所述水垢抑制剂时已经所剩无几了MIC下面可以证明challenging.One办法解决这个问题就是要不断把生产井,但是这导致额外的化学品消耗和更高的运营成本。聚合物结垢抑制剂已开发了含有可检测的标记,从而允许待监控的残余聚合物的浓度和减少的剂量不足或overdose.This方法的机会可能会降低运营成本;然而,复杂的和耗时的异地实验室分析,例如ICP或其它光谱学方法,都需要检测标记时,在此期间流动保证可能受到损害。本文报道的替代标记,很容易通过简单的现场滴定检测和有利的成本CON-straints.Additionally内提供出色的碳酸盐,硫酸盐抑制聚合物阻垢剂,新的新颖标记的阻垢剂预计会比更环保磷酸盐基水垢抑制剂,在石油和天然气industry.Analyses诸如静态罐测试和动态尺度环路(DSL)测试的需求不断增长被用来评价与市售的缩放的新阻垢剂的阻垢效率。性能抑制剂(SI)是由DSL,其中MIC测定为20ppm的对80ppm的用于在硫酸钡结垢两种广泛使用的阻垢剂强调盐水洗涤。的双重好处在场检测和优良的阻垢使该替代标记的阻垢剂有前途的和具有成本效益除了石油和天然气行业。

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