André Luis Andrade Dos Santos, José Jailton Marques, João Paulo Lobo Dos Santos, Gabriel Francisco da Silva, Luiz Carlos Lobato Dos Santos, George Simonelli, André Luis Dantas Ramos
Petroleum operations generate large volumes of oily sludge, a complex residue composed of emulsified oil, water, mineral solids, and chemical additives. This waste reduces storage capacity, accelerates corrosion, and poses significant environmental challenges. Although gas condensate (C5+) has been mentioned in isolated studies, its systematic application as the primary extraction solvent in a mixer-settler system combined with surfactant-assisted demulsification and statistically optimized operating conditions remains unexplored. This study evaluates the feasibility of using C5+ to recover hydrocarbons from oily sludge generated during primary processing. A mixer-settler system was employed with C5+ as the extraction solvent and the commercial surfactant Dissolvan 974 (Clariant), a polycondensed resin dissolved in an organic solvent mixture of xylene and ethanol (20-30% each), to destabilize emulsions. The raw sludge contained 60.5% water, 23.5% oil, and 16.0% solids. A 33-1 fractional factorial design was used to optimize operational parameters. The results demonstrate that C5+ enables efficient oil-water-solid separation and high hydrocarbon recovery, providing a technically viable and environmentally aligned pathway for oily sludge valorization. This integrated strategy offers a cost-effective alternative by utilizing an internal industrial byproduct to replace conventional solvents, while promoting environmental sustainability through circular-economy principles and alignment with the United Nations Sustainable Development Goals (SDGs 6, 9, and 12).