Javascript must be enabled to continue!
Improving Shale Inhibitive Performance using Methyl Glucoside (MEG) in Potassium Chloride Mud
View through CrossRef
Oil-based mud has shown a commended performance over the years in mitigating borehole instability especially when penetrating through a reactive shale zone which is known to have swelling and dispersion problems. However, the strict environmental regulations worldwide have limited the use of oil-based mud. Therefore the methyl glucoside, known as MEG, a specially formulated water-based mud has been introduced where its performance is close to the oil-based mud. This project studied the effect of using MEG in potassium chloride (MEG/KCl) mud in controlling shale swelling and dispersion. Five different concentrations (0, 5, 15, 25, and 35% by weight) were used in the hot rolling dispersion test. Besides, the rheological properties and fluid loss control were also tested as per the American Petroleum Institute – Recommended Practice – 13B (2009). The results showed that MEG/KCl mud was capable of improving the shale inhibitive performance to mitigate the shale swelling and dispersion problems. The higher concentration of MEG used such as 25% and 35%, the less shale would swell or disperse. However, the effectiveness of MEG was corresponding with clay content present in the shale.
Title: Improving Shale Inhibitive Performance using Methyl Glucoside (MEG) in Potassium Chloride Mud
Description:
Oil-based mud has shown a commended performance over the years in mitigating borehole instability especially when penetrating through a reactive shale zone which is known to have swelling and dispersion problems.
However, the strict environmental regulations worldwide have limited the use of oil-based mud.
Therefore the methyl glucoside, known as MEG, a specially formulated water-based mud has been introduced where its performance is close to the oil-based mud.
This project studied the effect of using MEG in potassium chloride (MEG/KCl) mud in controlling shale swelling and dispersion.
Five different concentrations (0, 5, 15, 25, and 35% by weight) were used in the hot rolling dispersion test.
Besides, the rheological properties and fluid loss control were also tested as per the American Petroleum Institute – Recommended Practice – 13B (2009).
The results showed that MEG/KCl mud was capable of improving the shale inhibitive performance to mitigate the shale swelling and dispersion problems.
The higher concentration of MEG used such as 25% and 35%, the less shale would swell or disperse.
However, the effectiveness of MEG was corresponding with clay content present in the shale.
Related Results
Effect of different clay additions to concrete on its ultrasonic acoustic parameters and compressive strength
Effect of different clay additions to concrete on its ultrasonic acoustic parameters and compressive strength
Abstract
Concrete may have different levels of mud content due to various factors, which can lead to reduction in strength and changes in ultrasonic acoustic parameters. In...
EffectiveFracturing Technology of Normal Pressure Shale Gas Wells
EffectiveFracturing Technology of Normal Pressure Shale Gas Wells
ABSTRACT
There is abundant normal pressure shale gas resource in China. However, it is hard to acquire commercial breakthroughs because of the relative low initia...
Synthèse géologique et hydrogéologique du Shale d'Utica et des unités sus-jacentes (Lorraine, Queenston et dépôts meubles), Basses-Terres du Saint-Laurent, Québec
Synthèse géologique et hydrogéologique du Shale d'Utica et des unités sus-jacentes (Lorraine, Queenston et dépôts meubles), Basses-Terres du Saint-Laurent, Québec
Le présent travail a été initié dans le cadre d'un mandat donné à l'INRS-ETE par la Commission géologique du Canada (CGC) et le Ministère du Développement durable, de l'Environneme...
STUDY OF MICROSCALE PORE STRUCTURE AND FRACTURING ON THE EXAMPLE OF CHINA SHALE FIELD
STUDY OF MICROSCALE PORE STRUCTURE AND FRACTURING ON THE EXAMPLE OF CHINA SHALE FIELD
Accurate characterization of pores and fractures in shale reservoirs is the theoretical basis for effective exploration and development of shale oil and gas. Currently, the scienti...
Field Deployment of Nanomaterial Based Shale Inhibitors
Field Deployment of Nanomaterial Based Shale Inhibitors
Abstract
Shale inhibition solutions that are commonly used in water-based fluids employ chemical systems that are not universally applicable. For example, kaolinite ...
Streaming Potential and the SP Log
Streaming Potential and the SP Log
Published in Petroleum Transactions, AIME, Volume 213, 1958, pages 170–179.
Abstract
Published laboratory data have established ...
Selective Inhibition of Potassium Contracture in Presence of Intact Twitch
Selective Inhibition of Potassium Contracture in Presence of Intact Twitch
If a sartorius muscle of frog is pretreated for 30 min. with a hyposmotic Ringer's (called "hyposmotic potassium chloride") in which all sodium chloride is replaced by 23 mM potass...
Multi-Interbedded Continental Shale Reservoir Evaluation and Fracturing Practice
Multi-Interbedded Continental Shale Reservoir Evaluation and Fracturing Practice
ABSTRACT:
Continental shale oil resources are abundant in Sichuan Basin in China, according to multiple limestone interbeds and variable longitudinal stress chara...

