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Synthesis and laboratory testing of a novel calcium-phosphonate reverse micelle nanofluid for oilfield mineral scale control

机译:新型钙膦酸盐反向胶束纳米流体的合成与实验室试验,用于油田矿物尺度控制

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Mineral scale blockage is a severe challenge to the oil and gas industry. Scale inhibitors are routinely injected (squeezed) into downhole formation to control the scale threat. Other than the conventional aqueous scale inhibitor products, non-aqueous inhibitor packages are more suitable for certain low water cut and water sensitive production wells. In this study, a novel reverse micelle based inhibitor nanomaterial fluid (nanofluid) was prepared to serve as a non-aqueous scale inhibitor delivery vehicle. The nanofluid was prepared by mixing component micelle solutions at room temperature to form scale inhibitor nanomaterials. The physicochemical properties of the prepared inhibitor nanomaterials, morphology, skeletal structure and thermal decomposition, were evaluated by electron microscopy, infrared spectra and thermal gravitational analyses, respectively. The transportability of the inhibitor nanofluid was investigated via column flow-through tests. Results show that the nanofluid is transportable in a calcite medium. Furthermore, preflush solutions can impact the nanomaterial transport behavior and an organic preflush is observed to enhance the nanofluid transport compared with aqueous solution preflush. The potential field application of this reverse micelle inhibitor nanomaterial product was assessed via laboratory squeeze simulation studies. The results suggest that this non-aqueous inhibitor nanofluid exhibits an enhanced performance compared with the conventional acidic pill solution in terms of extending the squeeze lifetime. This is the first report of the synthesis of reverse micelle based scale inhibitor nanofluid and the investigation of the transport and return behavior of this product for the purpose of oilfield scale control.
机译:矿物规模堵塞对石油和天然气行业来说是一个严重的挑战。常规注入(挤压)较井下形成以控制规模威胁。除了常规的含水抑制剂产品之外,非水抑制剂包装更适合某些低水平和水敏感的生产井。在该研究中,制备了一种新型反向胶束基抑制剂纳米材料(纳米流体)用作非水垢抑制剂递送载体。通过在室温下混合组分胶束溶液来制备纳米流体以形成水垢抑制剂纳米材料。通过电子显微镜,红外光谱和热重力分析评估制备的抑制剂纳米材料,形态,骨骼结构和热分解的物理化学性质。通过柱流过试验研究抑制剂纳米流体的可运输性。结果表明,纳米流体可在方解石培养基中运输。此外,预填充溶液可以影响纳米材料传输行为,并且观察到有机填料,以增强与水溶液预填充的纳米流体转运。通过实验室挤压仿真研究评估了这种反向胶束抑制剂纳米材料的潜在场施加。结果表明,与传统酸性丸溶液相比,该非水抑制剂纳米流体在延长挤压寿命方面比较了恒定的酸性丸溶液。这是第一胶质胶束抑制剂纳米流体合成的第一报告及本产品的运输及返回行为的研究,以便油田秤控制。

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