2009Global NEST JournalRequires access

BIOREMEDIATION OF CRUDE OIL-BEARING SOIL: EVALUATING THE EFFECT OF RHAMNOLIPID ADDITION TO SOIL TOXICITY AND TO CRUDE OIL BIODEGRADATION EFFICIENCY

C. Servulo, Luis Gonzaga Santos Sobral

Open publisher page 80 citations

Abstract

This work is aimed at evaluating the potentiality of adding a rhamnolipid biosurfactant in a petroleum-bearing soil. For this purpose, dehydrogenase activity and seed germination (Lactuca sativa) testes were performed before the biodegradation assays with different concentrations of rhamnolipid (1 to 15mg for 1g of soil). The addition of 1 and 15 mg g -1 of rhamnolipid was harmful to the soil environment. The biodegradation assays were carried out at room temperature during 45 days in bioreactors containing 450g of a polluted soil with different rhamnolipid concentrations varying from 1 to 15 mg g -1 . The nutrients were corrected through the addition of NH4NO3 and KH2PO4, in a nutritional ratio of C:N:P=100:15:1. The humidity was adjusted to 50% of the liquid retention capacity. Besides these assays, a control test was conducted without adding rhamnolipid. TPH (Total petroleum hydrocarbon) removal and seed germination were evaluated at the end of these experiments. When 4 mg g -1 of rhamnolipid were used a TPH removal of about 60% was observed. The biosurfactant addition improved all treatments, except for the assays with addition of 1 and 15 mg g -1 in which a decrease of the bioremediations rates was observed in the toxicity tests.

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What this paper is about

This work is aimed at evaluating the potentiality of adding a rhamnolipid biosurfactant in a petroleum-bearing soil. For this purpose, dehydrogenase activity and seed germination (Lactuca sativa) testes were performed before the biodegradation assays with different concentrations of rhamnolipid (1 to 15mg for 1g of soil). The addition of 1 and 15 mg g -1 of rhamnolipid was harmful to the soil environment. The biodegradation assays were carried out at room temperature during 45 days in bioreactors containing 450g of a polluted soil with different rhamnolipid concentrations varying from 1 to 15 mg g -1 . The nutrients were corrected through the addition of NH4NO3 and KH2PO4, in a nutritional ratio of C:N:P=100:15:1. The humidity was adjusted to 50% of the liquid retention capacity. Besides these assays, a control test was conducted without adding rhamnolipid. TPH (Total petroleum hydrocarbon) removal and seed germination were evaluated at the end of these experiments. When 4 mg g -1 of rhamnolipid were used a TPH removal of about 60% was observed. The biosurfactant addition improved all treatments, except for the assays with addition of 1 and 15 mg g -1 in which a decrease of the bioremediations rates was observed in the toxicity tests.

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Available abstract

This work is aimed at evaluating the potentiality of adding a rhamnolipid biosurfactant in a petroleum-bearing soil. For this purpose, dehydrogenase activity and seed germination (Lactuca sativa) testes were performed before the biodegradation assays with different concentrations of rhamnolipid (1 to 15mg for 1g of soil). The addition of 1 and 15 mg g -1 of rhamnolipid was harmful to the soil environment. The biodegradation assays were carried out at room temperature during 45 days in bioreactors containing 450g of a polluted soil with different rhamnolipid concentrations varying from 1 to 15 mg g -1 . The nutrients were corrected through the addition of NH4NO3 and KH2PO4, in a nutritional ratio of C:N:P=100:15:1. The humidity was adjusted to 50% of the liquid retention capacity. Besides these assays, a control test was conducted without adding rhamnolipid. TPH (Total petroleum hydrocarbon) removal and seed germination were evaluated at the end of these experiments. When 4 mg g -1 of rhamnolipid were used a TPH removal of about 60% was observed. The biosurfactant addition improved all treatments, except for the assays with addition of 1 and 15 mg g -1 in which a decrease of the bioremediations rates was observed in the toxicity tests.

Key concepts: Rhamnolipid, Bioremediation, Biodegradation, Total petroleum hydrocarbon, Germination, Lactuca, Chemistry, Environmental chemistry

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BIOREMEDIATION OF CRUDE OIL-BEARING SOIL: EVALUATING THE EFFECT OF RHAMNOLIPID ADDITION TO SOIL TOXICITY AND TO CRUDE OIL BIODEGRADATION EFFICIENCY — Research Paper | ScholarLens