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Coal Proccesing and Production

Demulsifying compositions for destruction of water coal tar emulsions

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References

  • Abdulkadi, M. 2010. Comparative analysis of the effect of demulsifiers in the treatment of crude oil emulsion ARPN. Journal of Engineering and Applied Sciences 5 (6):67–73.
  • Acosta, M., L. H. Reyes, J. C. Cruz, D. Pradilla, et al. 2020. Demulsification of Colombian heavy crude oil (W/O) emulsions: Insights into the instability mechanisms, chemical structure, and performance of different commercial demulsifiers. Energy & Fuels 34 (5):5665–78. doi:10.1021/acs.energyfuels.0c00313.
  • Bannikov, L., O. Lavrova, and V. Karchakova. 2021. Improvement of thermochemical dewatering of coal tar by forming compositional demulsifier. Petroleum and Coal 63 (3):887–98.
  • Bannikov, L. P., D. V. Miroshnichenko, S. V. Nesterenko, Y. S. Balaeva, and S. V. Fatenko. 2019. Influence of small coal particles in coking batch on coal-tar quality. Coke and Chemistry 62 (3):95–102. doi:10.3103/S1068364X19030025.
  • Baoquan, Z. 2009. Achieving good quality tar at Hamilton works. AISITech Proceeding 1:79–8.
  • Chang, C, and H. Fogler. 1996. Peptization and coagulation of asphaltenes in apolar media using oil-soluble polymers. Fuel Science and Technology International 14 (1-2):75–100. doi:10.1080/08843759608947563.
  • Cheshko, F. 2011. Microscopic study of the coal tar carbonaceous dispersed phase. Chemistry & Chemical Technology 5 (3):355–62. DOI. doi:10.23939/chcht05.03.355.
  • Coates, J. 2000. Interpretation of Infrared Spectra, A Practical Approach. Encyclopedia of Analytical Chemistry, 10815–37. Chichester: John Wiley & Sons Ltd.
  • DISSOLVAN 3245-1. 2020. CONC.; MSDS No. SXR024046; Clariant Produkte: Frankfurt am Main, Deutschland, June 08, 2020.
  • DISSOLVAN 3279-1. 2020. CONC.; MSDS No. SXR023848; Clariant Produkte: Frankfurt am Main, Deutschland, August 10, 2020.
  • DISSOLVAN 3879-1. 2019. CONC.; MSDS No. SXR024177; Clariant Produkte: Frankfurt am Main, Deutschland, October 18, 2019.
  • DISSOLVAN 3966-1. 2020. CONC.; MSDS No. SXR 023849; Clariant Produkte: Frankfurt am Main, Deutschland, November 12, 2020.
  • DISSOLVAN 4006-1. 2021. CONC.; MSDS No. SXR023869; Clariant Produkte: Frankfurt am Main, Deutschland, January 18, 2021.
  • DISSOLVAN 5022-1. 2020. CONC.; MSDS No. 000000049908; Clariant Produkte: Frankfurt am Main, Deutschland, June 16, 2020.
  • DISSOLVAN 5252-1. 2018. CONC.; MSDS No. 000000121353; Clariant Produkte: Frankfurt am Main, Deutschland, November 01, 2018.
  • Du, Y., Q. Wu, and L. Chen. 2012. Method for electric desalination, dehydration and slag removal of coal tar. China Patent CN102839007, filed November 11, 2011 and issued December 26, 2012.
  • Dziubiński, M., A. Witczak-Stawicka, and J. Stawczyk. 2004. Study of suspension stability. Petroleum and Coal 46 (2):47–4.
  • Ekott, E. J, and E. J. Akpabio. 2011. Influence of asphaltene content on demulsifiers performance in crude oil emulsions. Journal of Engineering and Applied Sciences 6 (3):200–4. doi:10.3923/jeasci.2011.200.204.
  • Gagarin, S. 1996. Additive scheme of calculation of polarizability of polycyclic aromatic compounds. Journal of Physical Chemistry 70 (5):854–9.
  • Gladiy, E., A. Kemalov, and V. Ganullin. 2015. Оценка эффективности широко применяемых реагентов-деэмульгаторов для обезвоживания нефти термохимическим способом [Efficiency mark widely used demulsifier reagents for oil dehydration by thermochemical way] https://bit.ly/3wkPNDg
  • Gnilokwas, O., G. Y. Chistova, A. V. Butakova, V. S. Perovskii, N. G. Med'vedev, G. Y. Anikin, and L. M. Andreev. 1987. Experimental-commercial tests of coal tar cleaning using AzNII additive. Coke and Chemistry 5:29–2.
  • Goodarzi, F, and S. Zendehboudi. 2019. A comprehensive review on emulsions and emulsion stability in chemical and energy industries. The Canadian Journal of Chemical Engineering 97 (1):281–309. doi:10.1002/cjce.23336.
  • Green, S, and B. Thakur. 1948. Thakur-insoluble matter of coal tar. III Some inorganic constituents of free carbon. J.S.C.I 67:436.
  • Kershaw, J, and K. Black. 1993. Structural characterization of coal tar and petroleum pitches. Energy & Fuels 7 (3):420–5. doi:10.1021/ef00039a014.
  • Korobchanskij, V. I., L. N. Akimova, V. G. Pugach, and D. A. Prusova. 1991. Application of surfactants for coal tar dewatering. https://bit.ly/3mIlCCK
  • Lei, Y., P. Yu, W. Ni, H. Peng, Y. Liu, X. Lv, and H. Zhao. 2021. Study on kinetic process of asphaltene precipitation during crude oil mixing and its effect on the wax behavior of crude oil. ACS Omega.6 (2):1497–504. doi:10.1021/acsomega.0c05121.
  • Li, H. 2013. Method for electric desalination, dehydration and slag removal of coal tar. China Patent CN 103102933 (A), filed September 11, 2011, and issued May 15, 2013.
  • McLean, J. D, and P. K. Kilpatrick. 1997. Effects of asphaltene solvency on stability of water-in-crude-oil emulsions. Journal of Colloid and Interface Science 189 (2):242–53. doi:10.1006/jcis.1997.4807.
  • Medvedev, K., E. Kucheryaviy, and L. Khar’kina. 1973. Disperse systems of coal tar and their physical-chemical properties. Coke and Chemistry 3:28–1.
  • Nazarov, V. G. 2016. Removal of naphthalene and tar from coke–oven gas in primary cooling and condensation. Coke and Chemistry 59 (6):221–34. doi:10.3103/S1068364X16060053.
  • Nebol’sina, L. 1985. States and perspectives of purification of waste waters of coking plants from emulsified oils. Coke and Chemistry 10:28–0.
  • Privalov, V, and M. Stepanenko. 1981. Coal tar pitch. Moskow: Metallurgiya.
  • Raya, S. A., I. Mohd Saaid, A. Abbas Ahmed, and A. Abubakar Umar. 2020. A critical review of development and demulsification mechanisms of crude oil emulsion in the petroleum industry. Journal of Petroleum Exploration and Production Technology 10 (4):1711–28. doi:10.1007/s13202-020-00830-7.
  • Rubchevskyi, V. M., Y. O.Chernyshov, V. V. Zelenskyi, S. O. Ovchynnikova, H. M. Tkalych, M. O. Kryvonis, M. O. Soloviov, B. Y.Vypriazhkin, Y. T. Kovaliov, L. P. Bannikov et al. 2014. Спосіб зневоднення смоли кам'яновугільної [Method of dewatering of coal tar]. Ukraine Patent. № 92537; filled February 24, 2014 and issued August 26, 2014.
  • Santos, R. G., W. Loh, A. C. Bannwart, and O. V. Trevisan. 2014. An overview of heavy oil properties and its recovery and transportation methods. Brazilian Journal of Chemical Engineering 31 (3):571–90. doi:10.1590/0104-6632.20140313s00001853.
  • Shampet’e, G, and G. Rabate. 1962. Chemistry of varnishes, paints and pigments. Moskow: Goskhimizdat.
  • Shi, L., C. Liu, M. Chen, Z. Hua, Z. Ye, and J. Zhang. 2021. Synthesis and evaluation of a hyperbranched copolymer as viscosity reducer for offshore heavy oil. Journal of Petroleum Science and Engineering 196:108011–9. doi:10.1016/j.petrol.2020.108011.
  • Shi, S., Q. Liu, and Z. Liu. 2005. Study on the emulsification mechanism, demulsification and dewater of coal-tar emulsifier. Paper presented at the International Conference on coal science and technology, Okinawa, Japan, October 9–14.
  • Shustikov, V. I., I. N. Pityulin , V. V. Prezhdo, and A. V. Kostromeev. 1991. State of coal tar-water system. Coke and Chemistry 11:22–4.
  • Speight, J. 2015. The chemistry and technology of petroleum. Boca Raton: CRC Press.
  • Tian, Y., J. Zhou, C. He, L. He, X. Li, and H. Sui. 2022. The formation, stabilization and separation of oil–water emulsions: A review. Processes 10 (4):738–72. doi:10.3390/pr10040738.
  • Topilnytskyy, P., S. Paiuk, H. Stebelska, V. Romanchuk, and T. Yarmola. 2019. Technological features of high-sulfur heavy crude oils processing. Chemistry & Chemical Technology 13 (4):503–9. doi:10.23939/chcht13.04.503.
  • Topilnytskyy, P., V. Romanchuk, S. Boichenko, and Y. Golych. 2014. Physico-chemical properties and efficiency of demulsifiers based on block copolymers of ethylene and propylene oxides. Chemistry & Chemical Technology 8 (2):211–8. doi:10.23939/chcht08.02.211.
  • Topilnytskyy, V., T. Romanchuk, H. Yarmola, and Stebelska, P. 2020. Study on rheological properties of extra-heavy crude oil from fields of Ukraine. Chemistry & Chemical Technology 14 (3):412–9. DOI doi:10.23939/chcht14.03.412.
  • Wang, S, and Z. Yang. 2013. Method for removing impurities of coal tar. China Patent №CN103160311A, filed March 28, 2013, and issued June 19, 2015.
  • Wu, B., H. Cheng, J. D. Childs, and D. A. Sabatini. 2002. Surfactant-enhanced removal of hydrophobic oils from source zones. Physicochemical Groundwater Remediation 11:245–9. doi:10.1007/0-306-46928-6_1.
  • Yangping, P, and Y. T. Yoshikawa. 2016. Oil-water separation method for water-containing coal tar and oil-water separation agent. China Patent № PCT/JP2015/081433; filed September 11, 2015, and issued July 21, 2016.
  • Zander, M. 1995. Aspects of coal tar chemistry: A review. Polycyclic Aromatic Compounds 7 (4):209–21. doi:10.1080/10406639508009625.

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