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Research and Application of Anti-Collapse Lubricant Compound Polyalcohol for Water-Based Drilling Fluid

DOI: 10.4236/ojogas.2022.71001, PP. 1-12

Keywords: Polyalcohol, Lubricity, Inhibition, Lauryl Polyether, Nonylphenol Polyether, Tween 80, Cloud Point

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Abstract:

Polyalcohol is an environmentally friendly anti-collapse lubricant commonly used in water-based drilling fluids. It is generally composed of the single polyether or polyol, but its lubricity and anti-collapse inhibition can’t satisfy the application of current water-based drilling fluid systems well. Consequently, the laboratory has carried out research on the anti-collapse lubricant compound polyalcohol. The anti-collapse lubricant samples are mixed with lauryl polyether, nonylphenol polyether and Tween 80 according to different proportions. The cloud point, the reduction rate of lubrication coefficient and linear expansion are measured, and the change they caused should be observed. Then, the optimal ratio is optimized through orthogonal experiments. The results show that the increase in the content of the three kinds of polyethers respectively enhances the inhibition. When the content of lauryl polyether increases, the cloud point of the anti-collapse lubricant declines and the reduction rate of lubrication coefficient rises; when the content of nonylphenol polyether increases, the cloud point declines, but it has little effect on the reduction rate of the lubrication coefficient; when the content of Tween 80 increases, the cloud point rises, and the reduction rate of the lubrication coefficient first augments and then basically remains unchanged. The best mass ratio of lauryl polyether:TW-80:nonylphenol polyether is 6:3:4.

References

[1]  Qin, G.C., Xu, M.B., He, M., et al. (2021) Research Progress in the Application of Polyalcohol in Drilling Fluids. Polymer Bulletin, 65-72.
[2]  Song, B.T., Liu, Z.L. and Xue, Y. (2014) Application of Polyether Polyol Drilling Fluid in Xu 33 Block of Subei Basin. Drilling Fluids and Completion Fluids, 31, 92-94.
[3]  Gao, Y.H., Liu, X.D. and Tan, W.L. (2014) Research on Additives to Improve the Performance of Polyether Polyol Drilling Fluids. Drilling Fluids and Completion Fluids, 31, 5-8.
[4]  Qiao, L. and Easteal, A.J. (1998) The Interaction between Triton X Series Surfactants and Poly (Ethylene Glycol) in Aqueous Solutions. Colloid & Polymer Science, 276, 313-320.
https://doi.org/10.1007/s003960050245
[5]  Wu, H.Y., Zhang, D.C. and Yu, X.D. (2019) Determination of the Cloud Point of Tween 80 and Its Influencing Factors. Food Industry, 40, 184-186.
[6]  Jiang, X.F., Wang, M.M. and Li, Y. (2015) Preparation of a Novel Triazine Ring Nonionic Surfactant. Journal of Dalian University of Technology, 34, 353-356.
[7]  Li, G.R. and Wang, C.J. (2020) Research Progress and Development Trend of Polar Adsorption Drilling Fluid Lubricants. Drilling Fluids and Completion Fluids, 37, 9-12.
[8]  Wang, H.Q. (2018) Research on Competitive Adsorption and Lubrication Performance of Biodiesel Components Based on Molecular Simulation. Master’s Thesis, Jiangsu University, Zhenjiang.
[9]  Geng, Y., Liu, H.S. and He, Z.T. (2021) Preparation of a New Environmentally Friendly Lubricant and Its Application in Shale Gas Water-Based Drilling Fluids. Drilling and Production Technology, 44, 92-95.

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