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This in turn resulted in increased microbial growth and enhanced biodegradation of hydrocarbons present in the petroleum effluent.
This phenomenon was further elucidated in Chrzanowski et al. (2011) during studies on biodegradation of a hydrocarbon-rich petroleum effluent by a microbial consortium in the presence of chlorophenols.
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An upflow anaerobic sludge blanket (UASB) bioreactor was successfully used for the treatment of petroleum refinery effluent.
In this paper, treatability of a petroleum refinery effluent using a Fenton-like oxidative reaction is described.
This work aims the synthesis and characterization of ZnO/SiO2 nanocatalyst from plant waste material by green route and application of this ZnO/SiO2 nanocatalyst for the treatment of petroleum refinery effluent.
Data from a petroleum refinery effluent treatment plant together with special design constraints are employed to formulate different design schemes based on recycling and rerouting strategies focusing on completely splitting system and zero liquid discharge (ZLD) opportunity.
In this study, the application of Fenton process with scrap iron powder was investigated for the treatment of a bio-refractory petroleum refinery effluent.
In this study, the Fenton treatment (combination of advanced oxidation and post-coagulation processes) was used with scrap iron powder for the treatment of a bio-refractory petroleum refinery effluent.
For simplicity, PAH loadings included only emissions to air and discharges to water (including petroleum spills, effluent discharges, and urban runoff).
In a screening program carried out in our laboratory, we isolated yeast strains from petroleum contaminated wastewater effluents that are able to utilize hydrocarbons.
Reverse osmosis (RO) systems are widely used during the treatment and reclamation processes for the effluent from petroleum refinery wastewater (PRW) plants (Pérez-González et al. 2012).
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