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首页> 外文期刊>Journal of Petroleum Exploration and Production Technology >Improvement of rheological and filtration characteristics of water-based drilling fluids using naturally derived henna leaf and hibiscus leaf extracts
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Improvement of rheological and filtration characteristics of water-based drilling fluids using naturally derived henna leaf and hibiscus leaf extracts

机译:采用天然衍生的无衍生的无线叶和芙蓉叶提取物改善水基钻井液的流变滤液特性

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摘要

Biodegradable additives are required to minimize the environmental hazards from drilling fluid wastes. This study explores the feasibility of the applications of henna leaf extracts (HLE) and hibiscus leaf extracts (HBLE) as ecological benign products in water-based drilling fluids (WBDFs). Rheological and filtration characterizations were carried out on the WBDFs to detect the effects of different concentrations (1, 2, 10, 20, 30, and 40?g) of these plant extracts at 78 and 300?°F. The results of 1 and 2?g of the plant extracts were compared with those of low-viscosity polyanionic cellulose (PAC LV). Compatibility test was carried out using 25?g/L of the green additives on base fluid (A-0), and the swelling rate of sodium bentonite in distilled water was also considered using 1, 10, and 20?g of the green additives. The findings showed that HLE and HBLE significantly reduced the filtrate loss between 62% and 67% and between 64% and 76%, respectively, and improved the rheological characteristics of the WBDF system between 10 and 40?g. PAC LV showed a greater effect on the rheological properties than the green additives in equal amounts (1 and 2?g), but it exhibited flat high and progressive gels which can lead to mechanical pipe sticking. The test data also showed that the inclusion of HLE and HBLE in the WBDF demonstrated larger impact on the mud cake than PAC LV. The cake thickness of the WBDF was reduced in the following order: 30–32% (by HLE), 32–33% (by HBLE), and 24–27% (by PAC LV). This interprets the outstanding filtration characteristics of green additives. Further, compatibility test data confirmed that the green additives are compatible with the other base fluid additives and the swelling behavior of sodium bentonite verified that the green plants are effective in inhibiting bentonite swelling. Here, the Henna extracts displayed higher inhibition property than the Hibiscus product. Notwithstanding, both products showed excellent inhibition property and a strong viscosity enhancing effect on the WBDF system.
机译:需要可生物降解的添加剂来最小化钻井液废物的环境危害。本研究探讨了指甲花叶提取物(HLE)和芙蓉叶提取物(HBEL)作为生态良性产物在水性钻井液(WBDF)中的应用的可行性。在WBDF上进行流变和过滤表征,以检测这些植物提取物在78和300Ω°F的不同浓度(1,2,10,20,30和40μl)的影响。将1和2μl植物提取物的结果与低粘度多阴离子纤维素(PAC LV)进行比较。使用25μlG/ L在基础液(A-0)上进行的相容性试验,并且还考虑使用1,10和20μlGreab添加剂考虑蒸馏水中膨润土的溶胀率。结果表明,HEL和HBEL显着降低了62%和67%和64%和76%之间的滤液损失,并改善了10至40μg的WBDF系统的流变特性。 PAC LV对流变性质的效果更大,比绿色添加剂相等(1和2?G),但它表现出平坦的高和渐进式凝胶,这可能导致机械管粘附。测试数据还表明,在WBDF中包含HLE和HBELS比PAC LV对泥饼的影响较大。 WBDF的蛋糕厚度按以下顺序减少:30-32%(通过HLE),32-33%(梭坡),24-27%(PAC LV)。这阐述了绿色添加剂的突出过滤特征。此外,相容性测试数据证实,绿色添加剂与其他基础流体添加剂相容,膨润土钠的溶胀行为证实,绿色植物在抑制膨润土溶胀方面是有效的。这里,Henna提取物显示出比芙蓉产品更高的抑制性质。尽管如此,两种产品都表现出优异的抑制性能和对WBDF系统的强烈粘度增强作用。

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