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A novel approach to enhance rheological and filtration properties of water-based mud using polypropylene-silica nanocomposite

机译:一种新的聚丙烯 - 二氧化硅纳米复合材料提高水基流变和过滤性能的方法

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摘要

Deeper drilling depths and high pressure high temperature (HPHT) wells require good well planning at minimum cost and unproductive time. Polymer nanocomposite has emerged as a promising additive to enhance the thermal stability of conventional water-based muds (WBMs). In this study, polypropylene-silica nanocomposite (PP-SiO2 NC) was synthesized using hot-emulsion sol-gel method. The performance of the PP-SiO2 NC in WBMs was critically examined and compared with that of partially hydrolyzed polyacrylamide (PHPA). Different characterization techniques were used to examine the morphology, structure information and thermal stability of the PP-SiO2 NC. The effect of 0.3 g, 0.6 g, 0.9 g, 1.2 g and 1.5 g each of PHPA and PP-SiO2 NC towards rheological properties, lubricity, filter cake thickness, and filtrate volume of WBM before and after thermal aging tests were studied. In addition, salt tolerance and cost analysis of the PP-SiO2 NC were evaluated. The results show that the PP-SiO2 NC has a spherical shape and a particle size distributed between 80 and 390 nm. The WBM with PP-SiO2 NC has better performance in controlling filtration and modifying rheological properties than the PHPA owing to the finely dispersed PP-SiO2 NC particles. With a concentration of 0.6 g after aging, the plastic viscosity of the PHPA mud decreased by 52.7% from 27.5 to 13 mPa s, while that of the PP-SiO2 NC mud reduced by 22.7% from 22 to 17 mPa s. Salt tolerance study showed that high concentration of potassium chloride affected the effectiveness of the PP-SiO2 NC in controlling HPHT filtrate volume. The cost analysis of the PP-SiO2 NC shows low cost of formulation. Hence, PP-SiO2 NC showed promising attributes for a good drilling mud.
机译:更深的钻孔深度和高压高温(HPHT)井需要良好的良好规划,以最小的成本和不生产时间。聚合物纳米复合材料作为有前途的添加剂,以增强常规水基泥浆(WBMS)的热稳定性。在该研究中,使用热乳液溶胶 - 凝胶法合成聚丙烯 - 二氧化硅纳米复合材料(PP-SiO 2 NC)。 PP-SiO2 NC在WBMS中的性能受到重视检查,并与部分水解的聚丙烯酰胺(PHPA)进行比较。使用不同的表征技术来检查PP-SiO2 NC的形态,结构信息和热稳定性。研究了0.3g,0.6g,0.9g,1.2g和1.5g PHPA和PP-SiO 2 NC的每种趋向于热老化试验前后WBM的流变性质,润滑性,滤饼厚度和滤液体积的每种效果。此外,评价PP-SiO2 NC的耐盐性和成本分析。结果表明,PP-SiO2 NC具有球形形状和分布在80至390nm之间的粒度。具有PP-SiO 2 NC的WBM在控制过滤和改变流变性质方面具有比PHPA的更好的性能,因为由于细分分散的PP-SiO 2 Nc颗粒。老化浓度为0.6g,PPA泥浆的塑料粘度从27.5至13MPa S降低52.7%,而PP-SiO2 NC泥浆的浓度从22.7%降低22.7%至17MPa。耐盐性研究表明,高浓度的氯化钾影响了PP-SiO2 NC控制HPHT滤液体积的有效性。 PP-SiO2 NC的成本分析显示了低制剂成本。因此,PP-SiO2 NC显示出良好的钻井泥浆的有希望的属性。

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