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Inhibition of Calcium Sulfate and Strontium Sulfate Scale in Waterflood

机译:水驱中硫酸钙和硫酸锶垢的抑制

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摘要

One of the most common methods of preventing downhole and topside mineral-scale formation in oil fields is through the use of chemical-scale inhibitors. Several aspects of the brine composition may affect the performance of the various scale inhibitors used in oilfield applications. This study was conducted to investigate the permeability reduction caused by deposition of calcium sulfate (CaSO_4) and strontium sulfate (SrSO_4) in Malaysian sandstone and Berea cores from mixing injected Malaysian seawaters (SW) (Angsi and Barton) and formation water (FW) that contain a high concen-tration of calcium and strontium ions at various temperatures (50 to 95℃) and differential pressures (75 to 200 psig). Scale-inhibition efficiency was determined in both the bulk jar and the core tests by using scale inhibitors methylene phosphonic acid (DETPMP), poly-phosphino carboxylic acid (PPCA), and phosphorus-based scale inhibitor (PBSI) at various temperatures (50 to 95℃) and concen-trations. The results showed a large extent of permeability damage caused by calcium and strontium sulfates that deposited on the rock pore surface. At higher temperatures, the rate of CaSO_4 and SrSO_4 precipitation increases because the solubilities of CaSO_4 and SrSO_4 scales decrease with increasing temperature. At 90℃ temperature, PBSI was the best inhibitor because it reduced more scale deposition compared to the DETPMP and PPCA inhibitors.
机译:预防油田中井下和顶侧矿物水垢形成的最常用方法之一是使用化学水垢抑制剂。盐水组合物的几个方面可能会影响油田应用中使用的各种阻垢剂的性能。进行这项研究的目的是研究混合注入的马来西亚海水(SW)(安西(Angsi)和巴顿(Barton))和地层水(FW)混合后在马来西亚砂岩和Berea岩心中由硫酸钙(CaSO_4)和硫酸锶(SrSO_4)沉积引起的渗透率降低。在不同温度(50至95℃)和压差(75至200 psig)下,钙和锶离子的浓度很高。在大容量罐和核心试验中均通过使用阻垢剂亚甲基膦酸(DETPMP),多膦基羧酸(PPCA)和磷基阻垢剂(PBSI)在各种温度下(50至95℃)和浓度。结果表明,沉积在岩石孔隙表面的硫酸钙和硫酸锶引起了很大程度的渗透性破坏。在较高的温度下,CaSO_4和SrSO_4沉淀的速率增加,因为CaSO_4和SrSO_4结垢的溶解度随温度升高而降低。在90℃的温度下,PBSI是最好的抑制剂,因为与DETPMP和PPCA抑制剂相比,它减少了更多的水垢沉积。

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  • 来源
    《SPE production and operations》 |2010年第4期|p.545-552|共8页
  • 作者

    Amer Badr BinMerdhah;

  • 作者单位

    Petroleum engineering department at Hadhramout University of Science and Technology, Yemen;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 00:37:48

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