Thermochemical Treatment of Nigerian Raw Clays for Oil and Gas Drilling Operations

IF 2.8 Q2 ENGINEERING, CHEMICAL ChemEngineering Pub Date : 2023-11-12 DOI:10.3390/chemengineering7060110
Oghenerume Ogolo, Akeem O. Arinkoola, Peter Ngene, Chukwuma C. Ogbaga, Samuel Osisanya
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Abstract

Sodium-based bentonite is used for drilling operations because of its high swelling capacity. This type of bentonite clay is not sourced locally in many oil- and gas-producing nations. However, low-swelling clays (calcium- and potassium-based) are in abundant quantities in most of these countries. Hence, there is a need to convert low-swelling bentonite clays to sodium-based bentonite. The method used to convert low-swelling clays is more applicable to calcium-based bentonite. This research investigated a thermochemical treatment method that converted potassium-based bentonite to sodium-based bentonite. The raw clay materials were sourced from Pindinga (P) and Ubakala (U) clay deposits in Nigeria. An X-ray diffractometer (XRD), an energy dispersive X-ray (EDX), and a scanning electron microscope (SEM) were used to characterize the raw clay samples. Mud slurry was prepared by mixing 22 g of the local raw clays, 3 wt.% soda ash, and MgO at concentrations between 1 and 3 wt.% and heating at 90 °C. The result showed that the viscosities of samples P and U increased from 6 to 26 and 8 to 35.5 cP before and after thermochemical treatment, respectively. Also, due to the thermochemical treatment, the samples’ yield point, consistency factor, consistency index, and thixotropy behavior were all significantly improved.
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尼日利亚生粘土在油气钻井作业中的热化学处理
钠基膨润土因其高膨胀能力而被用于钻井作业。在许多石油和天然气生产国,这种类型的膨润土并不是在当地采购的。然而,在大多数这些国家,低膨胀粘土(钙和钾基)储量丰富。因此,有必要将低膨润土粘土转化为钠基膨润土。低膨胀粘土的转化方法更适用于钙基膨润土。研究了将钾基膨润土转化为钠基膨润土的热化学处理方法。粘土原料来源于尼日利亚的Pindinga (P)和Ubakala (U)粘土矿床。利用x射线衍射仪(XRD)、能量色散x射线仪(EDX)和扫描电子显微镜(SEM)对原始粘土样品进行了表征。泥浆是通过将22 g本地生粘土、3 wt.%的纯碱和浓度在1 ~ 3 wt.%之间的MgO混合,并在90℃下加热制成的。结果表明,热化学处理前后样品P和U的粘度分别从6 ~ 26和8 ~ 35.5 cP增加。此外,由于热化学处理,样品的屈服点、一致性因子、一致性指数和触变性行为都得到了显著改善。
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来源期刊
ChemEngineering
ChemEngineering Engineering-Engineering (all)
CiteScore
4.00
自引率
4.00%
发文量
88
审稿时长
11 weeks
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