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Applications of highly salt and highly temperature resistance terpolymer of acrylamide/styrene/maleic anhydride monomers as a rheological modifier: Rheological and corrosion protection properties studies

机译:丙烯酰胺/苯乙烯/马来酸酐单体高盐和高温耐耐耐耐耐耐耐温性三元共聚物作为流变改性剂:流变和腐蚀保护性能研究

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Due to the weak performance of commercially affordable natural and synthetic polymeric thickeners in high temperatures and salinity, they fail to use in many applications especially in saline conditions with high temperatures. In this work, a new salt and temperature resistance acrylamide/styrene/maleic anhydride terpolymer (PASM-t) with self-associative properties was synthesized via a one-step inverse emulsion polymerization and its applicability as a rheological modifier and thickener was investigated. The characteristics of synthesized PASM-t (s-PASM-t) and its aqueous solutions were investigated using FT-IR, FE-SEM, GPC and rheometric mechanical spectrometry (RMS) analyses. The rheological investigations revealed that the shear viscosity of aqueous increases with the increment of temperature (from 30 degrees C to 80 degrees C) and salt concentration (from 5000 to 50000 ppm). High-temperature aging test at 150 degrees C for 12 h of terpolymer aqueous solutions was revealed the unique dramatical increment of rheological properties promoted in the presence of the salt Rheological behavior and corrosion protection properties of bentonite-based drilling fluid containing s-PASM-t were investigated and results were compared with those of the neat mud and the mud containing commercial carboxymethyl cellulose (CMC). Presented results showed that the s-PASM-t modified mud and shows the better rheological and corrosion resistance performance. (C) 2019 Elsevier B.V. All rights reserved.
机译:由于在高温和盐度的商业实惠的天然和合成聚合物增稠剂的性能较弱,它们不能在许多应用中使用,特别是在具有高温的盐条件下。在这项工作中,通过一步逆乳液聚合合成了一种新的盐和耐温性丙烯酰胺/苯乙烯/马来酸酐三元共聚物(PASM-T),并研究了作为流变改性剂和增稠剂的适用性。使用FT-IR,Fe-SEM,GPC和流变机械光谱(RMS)分析研究了合成的PASM-T(S-PASM-T)及其水溶液的特征。流变学研究表明,水性增加的剪切粘度随温度(30℃至80℃)和盐浓度(5000至50000ppm)的增量增加。在150℃下进行高温衰老试验,达到三元共聚物水溶液中的12小时,在盐水岩钻井液的盐流变行为的存在和耐腐蚀性能下促进的流变性质促进的独特炎性增量。含有S-PASM-T的耐腐蚀性研究了,并将结果与​​纯泥和含有商业羧甲基纤维素(CMC)的泥浆进行比较。提出的结果表明,S-PASM-T改性泥浆,显示出更好的流变和耐腐蚀性。 (c)2019 Elsevier B.v.保留所有权利。

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