4.6 Article

Simulated Ageing of Crude Oil and Advanced Oxidation Processes for Water Remediation since Crude Oil Pollution

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CATALYSTS
卷 11, 期 8, 页码 -

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MDPI
DOI: 10.3390/catal11080954

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crude oil; photocatalysis; sonolysis; sonophotocatalysis; FT-ICR; MS; Kendrick plot; van Krevelen diagram; water; pollution; remediation

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This study investigated the fate of Italian crude oil under simulated solar irradiation, as well as the transformations induced by different advanced oxidation processes (AOPs) for oil-polluted water remediation. The analysis revealed significant modifications in the composition of the crude oil after light irradiation, including the formation of potentially toxic substances. Remediation methods resulted in oil oxidation and changes in the non-polar compounds present in the water-soluble oil fraction.
Crude oil can undergo biotic and abiotic transformation processes in the environment. This article deals with the fate of an Italian crude oil under simulated solar irradiation to understand (i) the modification induced on its composition by artificial ageing and (ii) the transformations arising from different advanced oxidation processes (AOPs) applied as oil-polluted water remediation methods. The AOPs adopted were photocatalysis, sonolysis and, simultaneously, photocatalysis and sonolysis (sonophotocatalysis). Crude oil and its water-soluble fractions underwent analysis using GC-MS, liquid-state H-1-NMR, Fourier transform ion cyclotron resonance mass spectrometry (FT-ICR-MS), and fluorescence. The crude oil after light irradiation showed (i) significant modifications induced by the artificial ageing on its composition and (ii) the formation of potentially toxic substances. The treatment produced oil oxidation with a particular effect of double bonds oxygenation. Non-polar compounds present in the water-soluble oil fraction showed a strong presence of branched alkanes and a good amount of linear and aromatic alkanes. All remediation methods utilised generated an increase of C-5 class and a decrease of C-6-C-9 types of compounds. The analysis of polar molecules elucidated that oxygenated compounds underwent a slight reduction after photocatalysis and a sharp decline after sonophotocatalytic degradation. Significant modifications did not occur by sonolysis.

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