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Rducing Backpressure and Enhancing Throughput of Saltwater Disposal Wells with Chlorine Dioxide and Complex Nano Fluids: Optimization and Case Studies

机译:用二氧化氯和复合纳米液和复合纳米流体减少背部压力和增强盐水处理井的产量:优化和案例研究

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Oilfield produced waters are usually returned to the ground by either reinjecting into underground reservoirs for enhanced oil recovery or injecting in saltwater disposal wells (SWDW) for final disposal. SWDWs often receive waters from production wells with comingled brines. These brines contain residual oils, suspended solids, and additives (such as friction reducers, partially broken gels, biocides, scale and corrosion inhibitors). SWDWs experience declined well injectivity, due to damages from downhole buildup of particles, oils, and biofilms clogging well casing and tubing and plugging a well's perforations and the near wellbore matrix. To fix these problems, chemical treatments are often performed to restore the injectivity of the formations and reduce the injection pressure. Acids and solvents are frequently used to clear blockages of the wells and restore the permeability of the rock formation. Existing chemical treatments of SWDWs still face some challenges, including asphaltene and iron oxide and iron sulfide precipitation, and H2S formation from acid reaction with iron sulfides. Herein, we report the development and optimization of an innovative field SWDW chemical treatment program. We have successfully developed and optimized the new treatment method including three treating chemicals: hydrochloric acid (HCl), chlorine dioxide (ClO2), and a proprietary Complex nano Fluid (CnF?). Typically, CnF?, HCl, and ClO2 solutions are pumped sequentially downhole into the well formation, with the specific flush volumes of each chemical varying from well to well based on the wellbore configuration. The field application data collected from SWDWs in Haynesville Play and Permian Basin clearly demonstrate remarkable improvement in injectivity and pressure reduction parameters. In all cases, the new treatment combination provides great economic value, with investment payout time within a few weeks. The novel chemical treatment program is expected to have broad application in the treatment of SWDWs across a variety of geological formations in almost all basins.
机译:油田产生的水通常通过重新进入地下水库来返回地面,以增强储水或注射咸水处理井(SWDW)进行最终处置。 SWDW经常从生产的井中接收水域的水域。这些盐水含有残留的油,悬浮固体和添加剂(例如摩擦减速器,部分破碎的凝胶,杀生物剂,鳞片和腐蚀抑制剂)。由于颗粒,油和生物膜堵塞井下套管和管道井和井的穿孔和靠近井眼基质,SWDWS体验造成良好的注射率下降。为了解决这些问题,通常进行化学处理以恢复地层的注射性并降低注射压力。酸和溶剂经常用于清除孔的堵塞并恢复岩层的渗透性。 SWDW的现有化学处理仍面临一些挑战,包括沥青质和氧化铁和硫化铁沉淀,以及与硫化铁反应的H2S形成。在此,我们报告了创新领域SWDW化学治疗计划的开发和优化。我们已成功开发并优化了新的治疗方法,包括三种处理化学品:盐酸(HCl),二氧化氯(CLO2)和专有的复合纳米液(CNF?)。通常,CNFα,HCl和ClO2溶液依次倒置成井形成,每个化学物质的特异性冲洗体积从井间构造的井间均匀。从Haynesville Play和Permian盆地中收集的现场应用数据和Permian盆地清楚地表现出显着改善的注射性和减压参数。在所有情况下,新的治疗组合都提供了巨大的经济价值,在几周内投资支付时间。新的化学处理计划预计将在几乎所有盆地的各种地质​​构造中处理SWDW的广泛应用。

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