Synthesis and Evaluation of Poly (isobutylene-alt-maleic anhydride)-co-Poly (ethylene glycol) and its Copper Oxide Nanocomposite for Enhancing the Performance of Water-based Drilling Fluids in HPHT Wells

马来酸酐 异丁烯 乙二醇 纳米复合材料 钻井液 材料科学 环氧乙烷 高分子化学 共聚物 化学工程 有机化学 化学 钻探 聚合物 纳米技术 冶金 工程类
作者
Ahmed Abdelhak,Ahmed F. Ghanem,Abdulaziz Abdulaziz,Khalid I. Kabel,Ahmed Noah,Ahmed M. Youssef,Abdel Sattar Dahab
出处
期刊:Egyptian Journal of Chemistry 被引量:1
标识
DOI:10.21608/ejchem.2022.111764.5075
摘要

Enormous research work has been performed in order to retain the desired rheological, filtration, and friction properties of water-based drilling fluids at elevated temperature and pressure.In the current work, polyester copolymer (PES) was synthesized by esterification of poly isobutylene maleic anhydride (PIBMA) with poly ethylene glycol (PEG).Copper oxide nanoparticles (CuO-NPs) were added during the copolymerization in different ratios, 0.5, 1, and 2 Wt.%, so that new nanocomposites were obtained.The prepared PES and its nanocomposites were characterized by nuclear magnetic resonance (NMR), X-ray diffraction (XRD), transmission electron microscope (TEM), Fourier infrared spectroscopy (FTIR), and thermal gravimetric analysis (TGA).Moreover, case studies were conducted through analyzing the samples composed of water-based muds (WBM), developed with the copolymer and copolymer/CuO nanocomposites, compared with the blank ones.The results showed great enhancement in rheological, filtration, and friction properties of WBM developed by 3.5 ppb of PES copolymer (PIBMA-PEG) that can withstand high temperature beyond .On the other hand, the prepared nanocomposites showed an adverse effect on mud rheology at temperature greater than 300 F. The results appear a promising development in copolymerization and nanotechnology that plays a vital role to enhance drilling fluids performance at high temperature environment and minimize drilling cost together with the non-productive time (NPT).Considering that the best result is approached by adding 7 ppb PES to NaCl polymer mud that sustain rheological properties especially yield point (YP = 23 Ib/100) accompanied by controlling both filtrate volume and induced friction.

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