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Application of a Novel and Sustainable Silicate Solution as an Alternative to Sodium Silicate for Clay Swelling Inhibition

机译:一种新型和可持续的硅酸盐溶液作为硅酸钠替代硅酸钠溶解抑制作用

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Shale swelling during drilling operations causes many problems mainly related to wellbore instability. The oil-based muds (OBMs) are very effective in controlling the swelling potential of clay-rich shale formation, but their environmental concerns and the economic aspects curtail their usage. In the application of water-based mud (WBM), it is mixed with various swelling inhibitors such as inorganic salts (KCl and NaCl), sodium silicate, polymers, and amines of various types. The above-mentioned materials are however afflicted by some limitations in terms of their toxicity, their effect on drilling mud rheology, and their limited tolerance toward temperature and oil contamination. In this study, we investigated a novel hybrid aqueous alkali alumino silicate (AAAS) as a shale swelling inhibitor in WBM. The AAAS is a mixture of sodium, aluminum, and silicon oxides. Experimental investigations were carried out using a linear swell meter, hot rolling and capillary suction timer, ζ-potential test, filtration test, and rheology test. The application of hybrid silicate as a swelling inhibitor was studied in two phases. In the first phase, only silicate solutions were prepared in deionized water at various ratios (1, 2, and 5%) and tested on sodium bentonite and shale samples containing high contents of kaolinite clay. Further testing on commonly used inhibitors such as KCl and sodium silicate solutions was conducted for comparative purposes. In the second phase, different drilling mud formulations consisting of various percentages of AAAS were mixed and tested on original shale samples. It was observed that the novel silicate-based mix proved to be a strong shale swelling inhibitor. Its inhibition performance was better as compared to the sodium silicate solution and KCl solution. It not only inhibits shale swelling but also acts as a shale stabilizer due to its high adsorption on the shale surface, which prevents the shale/water reactivity, makes the shale formation stronger, and prevents caving.
机译:钻井作业期间的页岩肿胀会导致许多问题主要与井眼不稳定有关。油基泥浆(OBMS)在控制丰富的页岩形成的肿胀潜力方面非常有效,但它们的环境问题和经济方面削减了他们的用法。在水基泥浆(WBM)中,将其与各种溶胀抑制剂(如无机盐(KCl和NaCl),硅酸钠,聚合物和各种类型的胺混合。然而,上述材料在毒性方面的一些局限性,它们对钻井泥流变学的影响以及它们对温度和油污的有限耐受性。在这项研究中,我们研究了一种新型杂交碱水溶液硅酸盐(AAAS)作为WBM的页岩溶胀抑制剂。 AAA是钠,铝和氧化硅的混合物。使用线性膨胀表​​,热轧和毛细管抽吸定时器,α-潜在的试验,过滤试验和流变检测进行实验研究。在两个阶段中研究了混合硅酸盐作为溶胀抑制剂的施用。在第一阶段,仅在各种比例(1,2和5%)中仅在去离子水中制备硅酸盐溶液,并在膨润土和含有高含量高岭石粘土的含量的页岩样品上进行测试。对比较目的进行了对常用抑制剂如KCl和硅酸钠溶液的进一步测试。在第二阶段,在原始页岩样品上混合并测试了由各种百分比的AAA的不同钻井泥浆制剂。观察到新的硅酸盐的混合物被证明是一种强壮的页岩溶胀抑制剂。与硅酸钠溶液和KCl溶液相比,其抑制性能更好。它不仅抑制页岩肿胀,而且由于其对页岩表面的高吸附,因此防止页岩/水反应性,使页岩形成更强,并防止凹陷。

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