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A saturated saltwater drilling fluid based on salt-responsive polyampholytes

机译:基于盐响应多胍的饱和咸水钻井液

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Based on special antipolyelectrolyte effect of zwitterion polymer with same quantity of anionic and cationic charges, we developed two types of salt-responsive polyampholytes, one with high molecular weight and low charge density (HvL) and the other with low molecular weight and high charge density (LvH), by inverse emulsion polymerization. Molecular structure and salt-responsiveness of them were characterized by1H-NMR and rheology measurement, respectively. HvL and LvH were evaluated in saturated-salt bentonite suspension and influences of their ratio on apparent viscosity and fluid loss were investigated as well. The results indicate that HvL is better at decreasing fluid loss while LvH is better at maintaining low viscosity. A saturated saltwater drilling fluid centering on HvL and LvH with simple formula was designed and applied. It is indicated that salt-responsive polyampholytes are fundamentally better than AM-AMPS anionic copolymer and AM-AMPS-DMDAAC amphoteric copolymer. The saturated saltwater drilling fluid has excellent thermal stability, tolerance to bentonite and shale cuttings, and certain resistance to CaCl2. Salt-responsive polyampholytes can be used in KCl-saturated drilling fluid, with universal adaptability.
机译:基于用相同数量的阴离子和阳离子电荷的两性末端聚合物的特殊抗抛光电解效应,我们开发了两种类型的盐响应多聚晶晶,一种具有高分子量和低电荷密度(HVL),另一类具有低分子量和高电荷密度(LVH),通过反向乳液聚合。它们的分子结构和它们的盐响应性分别以1H-NMR和流变学测量为特征。在饱和盐膨润土悬浮液中评价HV1和LVH,并研究了它们对表观粘度和流体损失的比率的影响。结果表明,在保持低粘度时,HV1更好地降低流体损失。设计并施加在HVL和LVH上以HVL和LVH为中心的饱和咸水钻井液。结果表明,盐响应性多晶硅解基于AM-AMPS阴离子共聚物和AM-AMPS-DMDAAc两性共聚物。饱和咸水钻井液具有优异的热稳定性,对膨润土和页岩切割的耐受性,以及对CaCl2的某些抗性。盐响应聚晶醇可用于KCl饱和钻井液,具有通用适应性。

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