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Terpolymer with rigid side chain as filtrate reducer for water-based drilling fluids

机译:具有刚性侧链的三元共聚物作为水基钻井液的滤液减速器

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摘要

Synthetic copolymers as filtrate reducers for water-based drilling fluids (WBDFs) are difficult to meet the needs of drilling engineering only by changing the type and proportion of functional groups of copolymers, especially under ultra-high temperature and high salinity. In this study, an anionic terpolymer (named PSDI) with rigid side chain was synthesized using sodium p-styrenesulfonate, N, N-Dimethylacrylamide, and itaconic acid by free-radical copolymerization. The chemical structure of PSDI was characterized by Fourier transform infrared spectroscopy and H-1-NMR spectrum. The high-temperature/high-pressure filtration loss (FLHTHP) and the American Petroleum Institute filtration loss (FLAPI) of the WBDFs containing 1.5 wt/vol% PSDI were 35.0 and 17.0 ml after thermal rolling at 240 degrees C for 16 h, respectively. The FLHTHP and FLAPI of the WBDFs containing saturated NaCl were with control of 60.0 and 12.0 ml. The FLAPI of WBDFs containing 1.5 wt/vol% CaCl2 reduced to 6.0 ml. Results indicate that the addition of PSDI can improve the anti-high-temperature performance and resistance to salt and calcium contamination of WBDFs. Results of rheological tests through fitting four rheological models suggest that rheological parameters can be improved as a result of forming the spatial network structure between the PSDI and bentonite flakes.
机译:合成共聚物作为水基钻井液降滤失剂,仅通过改变共聚物官能团的类型和比例,很难满足钻井工程的需要,特别是在超高温高盐条件下。在本研究中,以对苯乙烯磺酸钠、N,N-二甲基丙烯酰胺和衣康酸为原料,通过自由基共聚合成了具有刚性侧链的阴离子三元共聚物(PSDI)。用傅里叶变换红外光谱和H-1-NMR谱对PSDI的化学结构进行了表征。含1.5 wt/vol%PSDI的WBDF在240℃下热滚16小时后的高温/高压过滤损失(FLHTHP)和美国石油学会过滤损失(FLAPI)分别为35.0和17.0 ml。含饱和NaCl的WBDF的FLHTHP和FLAPI分别为60.0和12.0 ml。含1.5 wt/vol%CaCl2的WBDF的FLAPI降低至6.0 ml。结果表明,添加PSDI可以提高WBDF的耐高温性能以及耐盐和钙污染性。通过拟合四个流变模型的流变试验结果表明,PSDI和膨润土薄片之间形成空间网络结构,可以改善流变参数。

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