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分子柔韧性对用作水基钻井液滤失添加剂的合成聚合物的流变和过滤性能的影响。

Effect of molecular flexibility on the rheological and filtration properties of synthetic polymers used as fluid loss additives in water-based drilling fluid.

作者信息

Chu Qi, Lin Ling

机构信息

State Key Laboratory of Shale Oil and Gas Enrichment Mechanisms and Effective Development Beijing 100101 China

Sinopec Research Institute of Petroleum Engineering, Sinopec Beijing 100101 China.

出版信息

RSC Adv. 2019 Mar 14;9(15):8608-8619. doi: 10.1039/c9ra00038k. eCollection 2019 Mar 12.

Abstract

The effect of molecular flexibility on the rheological and filtration properties of synthetic polymers used as fluid loss additives in water-based drilling fluid was investigated. A new synthetic polymer (PAANS) comprising acrylamide (AM), 2-acrylamido-2-methyl-1-propane sulfonic acid (AMPS), -vinyl-2-pyrrolidone (NVP) and potassium 2,5-dihydroxybenzenesulfonate (DHBS) was synthesized, in which phenyl groups were introduced in the backbone. Two other comparative polymers, PAAN and PAANS, were also prepared following the same synthesis procedure. PAAN comprises AM, AMPS and NVP, while PAANS consists of AM, AMPS, NVP and sodium 4-styrenesulfonate (SSS). PAAN, PAAND and PAANS were characterized by H NMR and elemental analysis, and the molecular weight was determined by static light scattering (SLS). The rheological properties, filtration properties and performance sustainability were investigated. Using a rheological properties measurement test, the apparent viscosity (AV), plastic viscosity (PV) and yield point (YP) of the Na-MMT/PAAND system at a concentration of 2.0% were 18.0 mP s, 12.0 mP s and 6.0 Pa, respectively, after a thermal aging test at 240 °C for 16 h. These values are much higher than those of the corresponding Na-MMT/PAAN and Na-MMT/PAANS systems. The API filtration loss volume (FL) and high-temperature/high-pressure filtrate volume (FL) of the Na-MMT/PAAND system at a concentration of 2.0% were 12.0 mL and 30.0 mL, respectively, after a thermal aging test at 240 °C for 16 h. These values are much lower than those of the Na-MMT/PAAN and Na-MMT/PAANS systems. Compared with PAAN and PAANS, PAAND presents the best performance sustainability after multiple shearing and thermal aging tests. At the same temperature, the order of maintaining rheological performance and controlling the FL and FL was PAAND > PAANS > PAAN in Na-MMT/PAANS-based drilling fluid at high temperature. Increasing the percentage of rigid monomers in the backbone was found to be conducive to maintaining the rheological stability and improving the filtration properties at high temperature. The control mechanism of fluid loss was investigated through adsorption tests using the method of thermal filtration, assessing particle size distribution on a laser diffraction particle size analyzer (LPSA) and examining filter cake morphologies using an environmental scanning electron microscope (ESEM). The results reveal that the introduction of rigid monomers into the synthetic polymer backbone can effectively improve the adsorption capacity of the polymer on the clay surface, obstruct the aggregation of clay particles, and improve the quality of filter cakes at high temperatures.

摘要

研究了分子柔韧性对用作水基钻井液滤失添加剂的合成聚合物流变性能和过滤性能的影响。合成了一种新型合成聚合物(PAANS),其由丙烯酰胺(AM)、2-丙烯酰胺基-2-甲基-1-丙烷磺酸(AMPS)、N-乙烯基-2-吡咯烷酮(NVP)和2,5-二羟基苯磺酸钾(DHBS)组成,主链中引入了苯基。按照相同的合成步骤还制备了另外两种对比聚合物PAAN和PAANS。PAAN由AM、AMPS和NVP组成,而PAANS由AM、AMPS、NVP和对苯乙烯磺酸钠(SSS)组成。通过核磁共振氢谱(H NMR)和元素分析对PAAN、PAAND和PAANS进行了表征,并通过静态光散射(SLS)测定了分子量。研究了它们的流变性能、过滤性能和性能可持续性。使用流变性能测量测试,在240℃热老化16小时后,浓度为2.0%的钠基蒙脱土/PAAND体系的表观粘度(AV)、塑性粘度(PV)和屈服点(YP)分别为18.0 mP s、12.0 mP s和6.0 Pa。这些值远高于相应的钠基蒙脱土/PAAN和钠基蒙脱土/PAANS体系的值。在240℃热老化16小时后,浓度为2.0%的钠基蒙脱土/PAAND体系的美国石油学会(API)滤失量(FL)和高温/高压滤液量(FL)分别为12.0 mL和30.0 mL。这些值远低于钠基蒙脱土/PAAN和钠基蒙脱土/PAANS体系的值。与PAAN和PAANS相比,PAAND在多次剪切和热老化测试后表现出最佳的性能可持续性。在相同温度下,在高温的钠基蒙脱土/PAANS基钻井液中,保持流变性能和控制FL及FL的顺序为PAAND>PAANS>PAAN。发现增加主链中刚性单体的比例有利于保持流变稳定性并改善高温下的过滤性能。通过热过滤法吸附试验、在激光衍射粒度分析仪(LPSA)上评估粒径分布以及使用环境扫描电子显微镜(ESEM)检查滤饼形态,研究了滤失的控制机制。结果表明,在合成聚合物主链中引入刚性单体可以有效提高聚合物在粘土表面的吸附能力,阻碍粘土颗粒的聚集,并改善高温下滤饼的质量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0112/9061758/d32033d39c36/c9ra00038k-f1.jpg

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