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Original Articles

Role of natural attenuation, phytoremediation and hybrid technologies in the remediation of a refinery soil with old/recent petroleum hydrocarbons contamination

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Pages 2097-2104 | Received 06 Sep 2011, Accepted 21 Jan 2012, Published online: 22 Feb 2012
 

Abstract

Within a search for a biological remediation technology to remove petroleum hydrocarbons (PHC) from a contaminated soil from a refinery, the potential of monitored natural attenuation (MNA) was compared with the use of transplants of Cortaderia selloana both in the absence and in the presence of soil amendments. After 31 months of experiments, MNA was effective in removing most of the recent PHC contamination (50% of the initial total contamination) at 5–20 cm depth. The presence of weathered contamination explains the existence of an established community of PHC degraders, as can be inferred by the most probable number technique. C. selloana, in its turn, showed capacity to mobilize the most recalcitrant fraction of PHC to its roots, nevertheless masking its remediation capacity. The use of a hybrid technology (C. selloana together with treatments with a surfactant and a bioaugmentation product) improved the removal of PHC at 15–20 cm depth, the presence of C. selloana facilitating the migration of additives into the deeper layers of soil, which can be considered a secondary but positive role of the plant. In the surface soil layer, which was exposed to both microorganisms and the atmosphere, a further 20% of weathered PHC contamination disappeared (70% total removal) as a result of photo- and chemical degradation. Periodic revolving of the soil, like tillage, to expose all the contaminated soil to the atmosphere will therefore be a reliable option for reducing the contamination of the refinery soil if conditions (space and equipment) permit this operation.

Acknowledgements

The authors wish to thank: Fundação para a Ciência e a Tecnologia for the PhD scholarship to M.N.C. (SFRH/31816/2006) co-financed by POPH/FSE; Refinaria do Porto (GALP Energy) for financial support; logistical support by C. Santos from Refinaria do Porto; technological advice and logistical support by I. Teixeira, R. Salé and E. Bernardes from Berka – Eng° E. Bernardes, Lda, and M.I. Caçador from the Oceanographic Institute of the Science Faculty of Lisbon University; and P. Guedes and R. Almeida for laboratorial support.

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