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Articles

Preparation, investigation and characterization of microemulsion used in cleaning waste liquid and drilling cuttings

ORCID Icon, , , &
Pages 919-929 | Received 25 Sep 2018, Accepted 24 Jan 2019, Published online: 04 Apr 2019

References

  • Aguiar, J., P. Carpena, J. A. Molina-Bolı́var, and C. C. Ruiz. 2003. On the determination of the critical micelle concentration by the pyrene 1:3 ratio method. Journal of Colloid & Interface Science 258 (1):116–22. doi:10.1016/S0021-9797(02)00082-6.
  • Arpornpong, N., A. Charoensaeng, S. Khaodhiar, and D. A. Sabatini. 2018. Formulation of microemulsion-based washing agent for oil recovery from spent bleaching earth-hydrophilic lipophilic deviation concept. Colloids & Surfaces A-Physicochemical & Engineering Aspects 541:87–96. doi:10.1016/j.colsurfa.2018.01.026.
  • Bordi, F., C. Cametti, S. H. Chen, J. Rouch, F. Sciortino, and P. Tartaglia. 2017. The static electrical conductivity of water-in-oil microemulsions below percolation threshold. Physica A Statistical Mechanics & Its Applications 231 (1):161–67. doi:10.1016/0378-4371(96)00080-5.
  • Cadogan, S. P., C. J. Hahn, M. H. Rausch, and A. P. Fröba. 2017. Study on the applicability of Dynamic Light Scattering (DLS) to microemulsions including supercritical carbon dioxide-swollen micelles. Journal of Colloid & Interface Science 499:202–08. doi:10.1016/j.jcis.2017.03.111.
  • Chen, J., X. Ma, G. Yao, W. Zhang, and Y. Zhao. 2018. Microemulsion-based anthocyanin systems: Effect of surfactants, cosurfactants, and its stability. International Journal of Food Properties 21 (1):1152–65. doi:10.1080/10942912.2018.1485032.
  • Feng, H. F., Y. D. Dan, and Y. Z. Zhao. 2010. A sensitive fluorescence method for monitoring the kinetics of microemulsion polymerization. Canadian Journal of Chemistry 88 (3):185–91. doi:10.1139/v09-161.
  • Feng, H. K. 2013. A novel embed fluorescence method for monitoring the change from emulsion polymeriztion to microemulsion polymerization. Applied Mechanics & Materials 303–306:323–28. doi:10.4028/www.scientific.net/AMM.303-306.323.
  • Gogan, R., V. Mattia, M. Oates, S. Gumarov, T. Shokanov, R. Mangiameli, S. Simmons, G. Boyles, and G. Woolsley 2010. Cuttings Re-Injection as an Environmentally Safe and Economically Efficient Drilling Waste Management Option for Karachaganak Field. SPE Caspian Carbonates Technology Conference. Society of Petroleum Engineers doi:10.2118/139768-ms.
  • Hao, L., C. Yegin, J. K. Oh, I. C. Chen, N. Nagabandi, J. V. Talari, L. Zhang, M. Akbulut, and B. Jiang. 2017. Solid-shelled microemulsion with capabilities of confinement-induced release for improving permeability of reservoirs. Chemical Engineering Journal 323:243–51. doi:10.1016/j.cej.2017.04.076.
  • Hu, N., Y. Li, Z. Wu, K. Lu, D. Huang, and W. Liu. 2018. Foams stabilization by silica nanoparticle with cationic and anionic surfactants in column flotation: Effects of particle size. Journal of the Taiwan Institute of Chemical Engineers. 88:62-69. doi: 10.1016/j.jtice.2018.04.008.
  • Huang, C., T. Li, T. Xu, Y. Zeng, and X. Song. 2018. Pyrolysis characteristics and kinetics of oil-based drilling cuttings in shale gas developing. American Institute of Physics Conference Series 1944 (1):020058. doi:10.1063/1.5029776.
  • Koneva, A. S., E. A. Safonova, P. S. Kondrakhina, M. A. Vovk, A. A. Lezov, Y. S. Chernyshev, and N. A. Smirnova. 2017. Effect of water content on structural and phase behavior of water-in-oil (n-decane) microemulsion system stabilized by mixed nonionic surfactants SPAN 80/TWEEN 80. Colloids & Surfaces A- Physicochemical & Engineering Aspects 518:273–82. doi:10.1016/j.colsurfa.2017.01.020.
  • Li, L., C. Ma, W. Hao, M. Li, Z. Huang, and Y. Liu. 2018. Study on the effect of innovative leaching solvent on the oil removal for oily drilling cuttings. IOP Conference Series: Earth and Environmental Science 121:022026. doi:10.1088/1755-1315/121/2/022026.
  • Li, X., G. He, W. Zheng, and G. Xiao. 2010. Study on conductivity property and microstructure of TritonX-100/alkanol/n-heptane/water microemulsion. Colloids & Surfaces A-Physicochemical & Engineering Aspects 360 (1):150–58. doi:10.1016/j.colsurfa.2010.02.026.
  • Liu, D., Y. Suo, J. Tan, and H. Lu. 2017. CO2-Switchable microemulsion based on a pseudogemini surfactant. Soft Matter 13 (20):3783–88. doi:10.1039/C7SM00576H.
  • Martínez-Martínez, F., A. Gutiérrez-Becerra, N. Casillas, M. Gradzielski, J. I. Escalante, and M. Bárcena-Soto. 2018. Characterization of reverse microemulsion formed with functionalized surfactants based on ferrycianide ions. Colloids & Surfaces A-Physicochemical & Engineering Aspects 541:10–16. doi:10.1016/j.colsurfa.2018.01.024.
  • Monteserã, N., . M., H. D. Burrows, V. Ajm, P. Aacc, P. R. Di, A. L. Maã Anita, and M. J. Tapia. 2017. Fluorescence enhancement of a cationic fluorene-phenylene conjugated polyelectrolyte induced by nonionic n-alkyl polyoxyethylene surfactants. Langmuir 33 (46):13350–63. doi:10.1021/acs.langmuir.7b02818.
  • Peng, Z. G., M. J. Zhong, Q. Feng, J. H. Huo, W. J. Luo, G. F. Lui, and B. J. Zhang. 2018. Preparation and properties of W/O microemulsified acid preflush. Natural Gas Industry 38:83–89. doi:10.3787/j.issn.1000-0976.2018.02.011.
  • Qin, T., G. Javanbakht, L. Goual, M. Piri, and B. Towler. 2017. Microemulsion-enhanced displacement of oil in porous media containing carbonate cements. Colloids & Surfaces A-Physicochemical & Engineering Aspects 530:60–71. doi:10.1016/j.colsurfa.2017.07.017.
  • Santos, J. M., I. J. Petri, A. C. S. Mota, A. D. S. Morais, and C. H. Ataíde. 2018. Optimization of the batch decontamination process of drill cuttings by microwave heating. Journal of Petroleum Science & Engineering 163:349–58. doi:10.1016/j.petrol.2018.01.003.
  • Santos, J. M., M. S. Pereira, I. P. Junior, M. M. R. Pena, and C. H. Ataide. 2014. Microwave drying of drilled cuttings in the context of waste disposal and drilling fluid recovery. Energy Technology 2 (9–10):832–38. doi:10.1002/ente.201402053.
  • Schöttl, S., and D. Horinek. 2016. Aggregation in detergent-free ternary mixtures with microemulsion-like properties. Current Opinion in Colloid & Interface Science 22:8–13. doi:10.1016/j.cocis.2016.02.003.
  • Shan, H., H. He, X. Zhang, Y. Zhang, and Z. Wang. 2016. Research on the treatment of oil-based drilling cuttings by ionic liquids. Environmental Protection of Oil & Gas Fields 26:15–17. doi:10.3969/j.issn.1005-3158.2016.03.005.
  • Veralópez, S., P. Martínez, M. A. San, A. M. Díezpascual, and M. Valiente. 2018. Study of graphene dispersions in sodium dodecylsulfate by steady-state fluorescence of pyrene. Journal of Colloid & Interface Science 514:415–24. doi:10.1016/j.jcis.2017.12.052.
  • Volpe, V., D. S. Nascimento, M. Insausti, and M. Grünhut. 2018. Octyl p-methoxycinnamate loaded microemulsion based on Ocimum basilicum essential oil. Characterization and analytical studies for potential cosmetic applications. Colloids & Surfaces A-Physicochemical & Engineering Aspects 546:285–92. doi:10.1016/j.colsurfa.2018.02.070.
  • Yanling, Z., and J. Nie. 2018. Development and application of three-phase centrifuge for oil based drilling cuttings. Oil Field Equipment 47:68–71. doi:10.3969/j.issn.1001-3482.2018.02.015.

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