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Comparison of an Emulsion- and Solution-Prepared Acrylamide/AMPS Copolymer for a Fluid Loss Agent in Drilling Fluid

机译:钻井液中流体损失剂的乳液和溶液制备的丙烯酰胺/ AMPS共聚物的比较

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Acrylamide polymers were widely used as oilfield chemical treatment agents because of their wide viscosity range and versatile functions. However, with the increased formation complexity, their shortcomings such as poor solubility and low resistance to temperature, salt, and calcium were gradually exposed. In this paper, acrylamide (AM)/2-acrylamide-2-methyl-1-propane sulfonic acid (AMPS) copolymers were synthesized by aqueous solution polymerization and inverse emulsion polymerization, respectively. The aqueous polymer (W-AM/AMPS) and the inverse emulsion polymer (E-AM/AMPS) were characterized by Fourier transform infrared (FTIR) spectroscopy, nuclear magnetic resonance (~(1)H NMR), transmission electron microscopy (TEM), scanning electron microscopy (SEM), and particle size analysis. The rheological properties, filtration properties, and sodium ion (Na~(+)) and calcium ion (Ca~(2+)) resistance were investigated. The results showed that E-AM/AMPS not only had a dissolution speed 4 times faster than that of W-AM/AMPS but also had superior shear-thinning performance both before and after aging. The filtration property of the bentonite system containing 2 wt % E-AM/AMPS was also better than that of the bentonite system containing 2 wt % W-AM/AMPS. In addition, E-AM/AMPS also exhibited extremely high tolerance for Na~(+) and Ca~(2+). The huge difference between rheological and filtration properties of E-AM/AMPS and W-AM/AMPS in drilling fluid can be attributed to the differences in the polymer microstructure caused by the two polymerization methods. Both FTIR and ~(1)H NMR results showed that more hydrogen bonds were formed between E-AM/AMPS molecular groups and molecular chains, which led to a cross-linked network structure of E-AM/AMPS which was observed by TEM. It was this cross-linked network structure that made E-AM/AMPS have a high viscosity and allowed it to be better adsorbed on bentonite particles, thus exhibiting excellent rheological and filtration behavior. In addition, E-AM/AMPS powder had a high specific surface area so that it can be dissolved in water faster, greatly reducing the time and difficulty of configuring drilling fluid.
机译:由于其宽粘度范围和多功能功能,丙烯酰胺聚合物广泛用作油田化学处理剂。然而,随着形成复杂性的增加,它们的缺点如缺乏溶解度和低抗温度,盐和钙,逐渐暴露。本文通过水溶液聚合和逆乳液聚合合成丙烯酰胺(AM)/ 2-丙烯酰胺-2-甲基-1-丙烷磺酸(AMPS)共聚物。通过傅里叶变换红外(FTIR)光谱,核磁共振(〜(1)H NMR),透射电子显微镜(TEM)表征含水聚合物(W-AM / AMPS)和逆乳液聚合物(E-AM / AMPS)的特征表征),扫描电子显微镜(SEM)和粒度分析。研究了流变性,过滤性能和钠离子(Na〜(+))和钙离子(Ca〜(2+))耐药性。结果表明,E-AM / AMPS不仅具有比W-AM / AMPS快4倍的溶解速度,而且在老化之前和之后也具有优异的剪切稀疏性能。含有2wt%E-AM / AMPS的膨润土体系的过滤性也优于含有2wt%w-am /安培的膨润土体系的膨润土体系。此外,E-AM / AMPS还对Na〜(+)和Ca〜(2+)表示极高的耐受性。 E-AM / AMPS和W-AM / AMPS在钻井液中的流变和过滤性能之间的巨大差异可归因于由两种聚合方法引起的聚合物微观结构的差异。 FTIR和〜(1)H NMR结果表明,在E-AM / AMPS分子基团和分子链之间形成了更多的氢键,其导致通过TEM观察到的E-AM / AMP的交联网络结构。这是这种交联网络结构,使E-AM / AMPS具有高粘度,使其更好地吸附在膨润土颗粒上,从而表现出优异的流变和过滤行为。此外,E-AM / AMPS粉末具有高比表面积,使其可以更快地溶解在水中,大大减少配置钻井液的时间和难度。

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