Influence of temperature and pH on polyacrylamide-based drilling fluid: Characterization and rheological study

Jin Kwei Koh, C. Lai, M. Johan, Sin Seng Gan, W. W. Chua
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Abstract

Polyacrylamide (PAM) is a biodegradable polymer with good lubricity in friction reduction. However, there is insufficient guidance on the dosage of PAM and poor rheological information on the effects of temperature and pH. This study aimed to investigate the characterization of the material and rheological analysis regarding the effects of concentration, pH, and temperature of PAM. In material characterization, PAM has been shown to offer hydrophilic surfaces. In a rheological study, 1000 ppm PAM was the critical association concentration, as the rheological properties below 1000 ppm PAM were superior. This was due to the dispersion stability effect caused by the polymer concentration. Additionally, a low concentration of polymer contributes to bridging flocculation with an unstable rheological profile and low association networking. When the polymer concentration is further increased to the saturated adsorption level, the rheological profile of PAM above 1000 ppm is significantly affected as a result of the alternation from steric stabilization to depletion flocculation in a polymer system. Furthermore, the rheological performance of PAM was significantly affected by temperature and pH, showing better performance after heating to 60 °C and at pH = 10. Future studies can further develop modified PAM with specific additives at an optimized temperature and pH to investigate the rheological performance of drilling.
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温度和pH对聚丙烯酰胺钻井液的影响:表征和流变学研究
聚丙烯酰胺(PAM)是一种可生物降解的聚合物,具有良好的减摩润滑性能。然而,对PAM的剂量没有足够的指导,对温度和pH影响的流变学信息也很差。本研究旨在研究材料的特性和PAM浓度、pH和温度影响的流变分析。在材料表征方面,PAM已被证明具有亲水性表面。在流变学研究中,1000ppm PAM是临界缔合浓度,因为低于1000ppm PAM的流变特性优越。这是由于聚合物浓度引起的分散稳定性效应。此外,低浓度的聚合物有助于具有不稳定流变剖面和低缔合网络的桥接絮凝。当聚合物浓度进一步增加到饱和吸附水平时,由于聚合物系统中从空间稳定到耗尽絮凝的交替,高于1000ppm的PAM的流变特性受到显著影响。此外,PAM的流变性能受到温度和pH的显著影响,在加热至60°C和pH=10时表现出更好的性能。未来的研究可以在优化的温度和pH下进一步开发具有特定添加剂的改性PAM,以研究钻井的流变性能。
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