The Effect of Betaine Surfactant on Carbonate Reservoir Wettability in Self-Diverting Acidizing Stimulation

Xiaqing LI, Guicai ZHANG, Jijiang GE, Ning QI, Lipei FU, Xuan ZHANG

Abstract


Contact angle alterations of carbonate cores after immersing in spent acid with oleyl amido propyl betaine surfactant were measured to clarify the effect of viscoelastic surfactant on the wettability of carbonate reservoir during self-diverting acidizing. The results showed that spent acid solutions with hydrochloric acid and betaine surfactant induced core wettability to water-wetting for initially oil-wet rocks, and oil-wetting for initially water-wet rocks. Longer immersion time and higher concentration of surfactant enhanced the effects. The adverse wettability reversal for water-wet reservoir was eliminated by mutual solvent or brine postflush. Chemical mechanisms of the wettability alteration were interpreted.


Keywords


Carbonate reservoir; Self-diverting acid; Wettability; Contact angle; Postflush

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References


[1] Bulgakova, G. T., Kharisov, R. Y., Pestrikov, A. V., & Sharifullin, A. R. (2014). Experimental study of a viscoelastic surfactant-based in situ self-diverting acid system: Results and interpretation. Energy & Fuels, 28(3), 1674-1685.

[2] Zhang, T., Lu, H., Qu, S., Dai, S., Zhang, X., Huang, Z., & Quan, H. (2014). Synthesis and acid solution properties of two-head group viscoelastic surfactant. Petroleum Science and Technology, 32(6), 729-737.

[3] Hinkel, J. J., Brown, J. E., Gadiyar, B. R., & Beyer, E. (2003, May). New environmentally friendly surfactant enhances well cleanup. Paper presented at the SPE European Formation Damage Conference, The Hague, Netherlands.

[4] Penny, G. S., Conway, M. W., & Briscoe, J. E. (1983, October). Enhanced load water-recovery technique improves stimulation results. Paper presented at the SPE Annual Technical Conference and Exhibition, San Francisco, California.

[5] Jennings Jr., A. R. (1975). The effect of surfactant-bearing fluids on permeability behavior in oil-producing formations. Paper presented at the Fall Meeting of the Society of Petroleum Engineers of AIME, Dallas, Texas.

[6] Sheng, J. J. (2013). Review of surfactant enhanced oil recovery in carbonate reservoirs. Advances in Petroleum Exploration & Development, 6(1), 1-10.

[7] Adejare, O. O., Nasralla, R. A., & Nasr-El-Din, H. A. (2014). A procedure for measuring contact angles when surfactants reduce the interfacial tension and cause oil droplets to spread. SPE Reservoir Evaluation & Engineering, 17(3), 365-372.

[8] Duyvis, E. M., & Smits, L. J. M. (1970). A test for the wettability of carbonate rocks. SPE Journal, 10(1), 3-4.

[9] Shariatpanahi, S. F., Strand, S., & Austad, T. (2010). Evaluation of water-based enhanced oil recovery (EOR) by wettability alteration in a low-permeable fractured limestone oil reservoir. Energy & Fuels, 24(11), 5997-6008.

[10] Standnes, D. C., & Austad, T. (2000). Wettability alteration in chalk : 1. Preparation of core material and oil properties. Journal of Petroleum Science & Engineering, 28(3), 111-121.

[11] Nasr-El-Din, H. A., Al-Ghamdi, A. H., Al-Qahtani, A. A., & Samuel, M. M. (2008). Impact of acid additives on the rheological properties of a viscoelastic surfactant and their influence on field application. SPE Journal, 13(1), 35-47.

[12] Seethepalli, A., Adibhatla, B., & Mohanty, K. K. (2004, April). Wettability alteration during surfactant flooding of carbonate reservoirs. Paper presented at the SPE/DOE Symposium on Improved Oil Recovery, Tulsa, Oklahoma.

[13] Abdollahi, R., & Shadizadeh, S. R. (2013). The effect of spent acid on carbonate rock wettability during a matrix acidizing treatment. Petroleum Science and Technology, 32(4), 450-454.

[14] Bernhard, L., Chris, F., Mark, B., Matthew, M., Syed, A., & Kelly, H. (2007). Diversion and cleanup studies of viscoelastic surfactant-based self-diverting acid. SPE Production & Operations, 22(1), 121-127.

[15] Kaminsky, R., Radke, C. J., Kaminsky, R., & Radke, C. J. (1997). Asphaltenes, Water Films, and Wettability Reversal. SPE Journal, 2(4), 485-493.

[16] Standnes, D. C., & Austad, T. (2003). Wettability alteration in carbonates interaction between cationic surfactant and carboxylates as a key factor in wettability alteration from oil-wet to water-wet conditions. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 216(1-3), 243-259.




DOI: http://dx.doi.org/10.3968/8344

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