Department of Process Engineering and Technology of Polymers and Carbon Materials, Faculty of Chemistry, Wroclaw University of Science and TechnologyWrocław, Poland
Department of Process Engineering and Technology of Polymers and Carbon Materials, Faculty of Chemistry, Wroclaw University of Science and TechnologyWrocław, Poland
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Available from: https://group.atradius.com/publications/industry-trends/automotive-industry-trends-2023.html.Search in Google Scholar
Yuying D, Min D, Yanni W, Changsheng P. Emulsion system, demulsification and membrane technology in oil-water emulsion separation. A comprehensive review. Crit Rev Environ Sci Technol. 2023;53(12):1254-78. DOI: 10.1080/10643389.2022.2131340.Search in Google Scholar
Pensini E, Harbottle D, Yang F, Harbottle P, Li ZF, Kailey I, et al. Demulsification mechanism of asphaltene-stabilized water-in-oil emulsions by a polymeric ethylene oxide - pro-pylene oxide demulsifier. Energy Fuels. 2014;28(11):6760-71. DOI: 10.1021/ef501387k.Search in Google Scholar
Zhai MJ, Wu M, Wang CY, Li, XB. A novel silica-supported polyether polysiloxane quaternaryammonium demulsifier for highly efficient fine-sized oil droplet removal of oil-in-water emulsions. RSC Adv. 2020;10(32):18918-26. DOI: 10.1039/D0RA01679A.Search in Google Scholar
Kuang JZ, Mi YZ, Zhang ZJ, Ye F, Yuan HK, Liu WF, Jiang, X, et al. A hyperbranched poly(amido amine) demulsifier with trimethyl citrate as initial cores and its demulsification performance at ambient temperature. J Water Proc Eng. 2020;38:101542. DOI: 10.1016/j.jwpe.2020.101542.Search in Google Scholar
Putatunda S, Bhattachatya S, Sen D, Bhattacharjee C. A review on the application of different processes for emulisified oily wastewater. Int J Environ Sci Technol. 2019;16:2525-36. DOI: 10.1007/s13762-018-2055-6.Search in Google Scholar
Mag TK, Green DH, Kwong AT. Continuous acidulation of soapstock and recovery of acid oil. J Am Oil Chem Soc. 1983;60(5):1008-11. DOI: 10.1007/BF02660217.Search in Google Scholar
Daaou M, Bendedouch D. Water pH and surfactant addition effects on the stability of an Algerian crude oil emulsion. J Saudi Chem Soc King Saud Univ. 2012;16(3):333-7 DOI: 10.1016/j.jscs.2011.05.015.Search in Google Scholar
Cerff B, Key D, Bladergroen B. A review of the processes associated with the removal of oil in water pollution. Sustainability. 2021;13:12339. DOI: 10.3390/su132212339.Search in Google Scholar
Saththasivam J, Loganathan K, Sarp S. An overview of oil-water separation using gas flotation systems. Chemosphere. 2016;144:671-80. DOI: 10.1016/j.chemosphere.2015.08.087.Search in Google Scholar
Li X, Liu J, Wang Y, Xu H, Cao Y, Deng X. Separation of oil from wastewater by coal adsorption-column flotation. Sep Sci Technol. 2014;50:583-91. DOI: 10.1080/01496395.2014.956759.Search in Google Scholar
Ghernaout D. Advanced oxidation phenomena in electrocoagulation process: A myth or a reality? Desalination Water Treat. 2013;51:7536-54. DOI: 10.1080/19443994.2013.792520.Search in Google Scholar
Da Rosa JJ, Rubio J. The FF (flocculation-flotation) Process. Miner Eng. 2005;18:701-7 DOI: 10.1016/j.mineng.2004.10.010.Search in Google Scholar
Lazarević V, Stanisavljevi. M. The treatment of waste oil-in-water emulsions in the metalworking process. Safety Eng. 2018;8(1):21-6. DOI: 10.562/SE2018.9.01.04.Search in Google Scholar
Benito JM, Cambiella A, Lobo A, Gutierrez G, Coca J, Pazos C. Formulation, characterization and treatment of metalworking oil-in-water emulsions. Clean Techn Environ Policy. 2010;12:31-41. DOI: 10.1007/s10098-009-0219-2.Search in Google Scholar
Liu Z, Liu Y, Chen L, Hang X. Treatment of emulsion wastewater by demulsification-Fenton oxidation coagulation. Fourth Int Conf Intelligent Computation Technol Automation. 2011;2:918-21. DOI: 10.1109/ICICTA.2011.516.Search in Google Scholar
Gierżatowicz R, Pawłowski L. Sposób deemulgacji emulsji wodno-olejowych zwłaszcza przepracowanych chłodziw obrabiarkowych (Method of demulsification of water-oil emulsions especially of used machine tool coolants). Patent PL165104. Available from: https://worldwide.espacenet.com/patent/search/family/020053400/publication/PL165104B1?q=PL%20165104.Search in Google Scholar
Rogoś E, Urbański A. Skuteczność destabilizacji emulsji olejowo-wodnych metodami chemicznymi (Effectiveness of destabilization of oil-water emulsions by chemical methods). Problemy Eksploatacji. 2012;1:149-158. Available from: https://yadda.icm.edu.pl/baztech/element/bwmeta1.element.baztech-article-BAR0-0063-0036?q=bwmeta1.element.baztech-volume-1232-9312-problemy_eksploatacji-2012-nr_1;14&qt=CHILDREN-STATELESS.Search in Google Scholar
Pacholski P, Sęk J. Experimental analysis of chemical demulsification of cutting oil. Acta Innovations. 2018;26:28-37. DOI: 10.32933/ActaInnovations.26.3.Search in Google Scholar
Sęk J, Głąbała D, Kiljański T. Badanie przebiegu procesów deemulgacji za pomocą metod spektrofotometrycznych (Investigation of demulsification processes using spectrophotometric methods). Inż Ap Chem. 2012;51(6):381-2. Available from: https://bibliotekanauki.pl/articles/2071861.Search in Google Scholar
Kang W, Cui X, Cui Y, Bao L, Ma K. Assessment of high salinity wastewater treatment with dewatered alum sludge-aerobic membrane reactor. Ecol Chem Eng S. 2022;29(1):77-86. DOI: 10.2478/eces-2022-0001.Search in Google Scholar