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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.
In this study, the application of Fenton process with scrap iron powder was investigated for the treatment of a bio-refractory petroleum refinery effluent.
Both areas receive refinery effluent which passes through the dug-in channels from petroleum tank farm to the discharge points, which is the Bonny River.
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.
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.
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Petroleum refinery effluents (PREs) are wastewaters characterised by high values of chemical oxygen demand (COD) and total organic carbon (TOC).
Petroleum refinery effluents contain large quantities of such toxic and recalcitrant aromatic compounds as Benzene, Toluene, Ethyl benzene, and Xylene which are recognized as the most hazardous compounds released into the environment (Aranda et al. 2010; Tiburtius et al. 2005).
The accuracy was evaluated by spike tests in oil-refinery effluent samples and analysis of a vegetable certified reference material (NIST 1571, orchard leaves).
A procedure has been developed for the simultaneous determination of traces amounts of Cd, Cr, Cu, Mn, Ni and Pb from saline oil-refinery effluents and digested vegetable samples using inductively coupled plasma optical emission spectrometry (ICP OES).
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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