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Original Articles

Low-temperature isothermal oxidation of crude oil

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References

  • Chen, Z. Y., Wang, L., Duan, Q., Zhang, L., and Ren, S. R. (2013). High-pressure air injection for improved oil recovery: low-temperature oxidation models and thermal effect. Energy Fuels 27:780–786.
  • Fassihi, M. R., Meyers, K. O., and Baslie, P. F. (1990). Low-temperature oxidation of viscous crude oils. SPE Res. Eng. 5:609–616.
  • Freitag, N. P. (2010). Evidence that naturally occurring inhibitors affect the low-temperature oxidation kinetics of heavy oil. J. Can. Pet. Technol. 49:36–41.
  • Gui, B., Yang, Q. Y., Wu, H. J., Zhang, X., and Lu, Y. (2010). Study of the effects of low-temperature oxidation on the chemical composition of a light crude oil. Energy Fuels 24:1139–1145.
  • Li, J., Mehta, S. A., Moore, R. G., Zalewski, E., Ursenbach, M. G., and Van Fraassen, K. (2006). Investigation of the oxidation behaviour of pure hydrocarbon components and crude oils utilizing PDSC thermal technique. J. Can. Pet. Technol. 45:48–53.
  • Li, Y. B., Chen, Y. F., Pu, W. F., Jin, F. Y., Yuan, C. D., Li, D., Zhao, J. Y., and Zhou, W. (2015). The kinetic analysis of oxidized oil during the high pressure air injection by thermal kinetic analysis. Pet. Sci. Technol. 33:319–326.
  • Moore, R. G., and Ursenbach, M. G. (2002). Air injection for oil recovery. J. Can. Pet. Technol. 41:16–19.
  • Murugan, P., Mahinpey, N., Mani, T., and Asghari, K. (2010). Effect of low-temperature oxidation on the pyrolysis and combustion of whole oil. Energy 35:2317–2322.
  • Ni, J. H., Jia, H., Pu, W. F., Jiang, H., Yang, J. J., and Ren, Q. (2014). Thermal kinetics study of light oil oxidation using TG/32TG techniques. J. Therm. Anal. Calorim. 117:1349–1355.
  • Niu, B. N., Ren, S. R., Liu, Y. H., Wang, D. Z., Tang, L. Z., and Chen, B. L. (2011). Low-temperature oxidation of oil components in an air injection process for improved oil recovery. Energy Fuels 25:4299–4304.
  • Pereira, A. N., and Trevisan, O. V. (2014). Thermoanalysis and reaction kinetics of heavy oil combustion. J. Braz. Soc. Mech. Sci. Eng. 36:393–401.
  • Pu, W. F., Chen, Y. F., Jin, F. Y., Li, Y. B., Sun, L., Yuan, C. D., Ma, Q. J., and Li, D. (2015). The kinetic analysis of coke formation under differential air-oil ratio during high pressure air injection. Pet. Sci. Technol. 33:503–509.
  • Pu, W. F., Liu, P. G., Jia, H., Zhao, S., Du, D. J., Wang, S., Sun, B. S., and Chen, Y. F. (2015). Comparative study of light and heavy oils oxidation using thermal analysis methods. Pet. Sci. Technol. 33:1357–1365.
  • Pu, W. F., Yuan, C. D., Jin, F. Y., Wang, L., Qian, Z., Li, Y. B., Li, D., and Chen, Y. F. (2014). Low-temperature oxidation and characterization of heavy oil via thermal analysis. Energy Fuels 29:1151–1159.
  • Ranjbar, M., and Pusch, G. (1991). Pyrolysis and combustion kinetics of crude oils, asphaltenes and resins in relation to thermal recovery processes. J. Anal. Appl. Pyrol. 20:185–196.
  • Ursenbach, M. G., Moore, R. G., and Mehta, S. A. (2010). Air injection in heavy oil reservoirs—a process whose time has come (again). J. Can. Pet. Technol. 49:48–54.
  • Wang, J. X., Wang, T. F., Feng, C. M., Yang, C. H., Chen, Z., and Lu, G. C. (2015). Catalytic effect of transition metallic additives on the light oil low-temperature oxidation reaction. Energy Fuels 29:3545–3555.
  • Zhang, L., Deng, J. Y., Wang, L., Chen, Z. Y., Ren, S. R., Hu, C. H., and Zhang, S. J. (2014). Low-temperature oxidation characteristics and its effect on the critical coking temperature of heavy oils. Energy Fuels 29:538–545.
  • Zhao, J. Z., Jia, H., Pu, W. F., Wang, L. L., and Peng, H. (2012). Sensitivity studies on the oxidation behavior of crude oil in porous media. Energy Fuels 26:6815–6823.

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