New strains of oil-degrading microorganisms for treating contaminated soils and wastes
Новые штаммы нефтедеструктирующих микроорганизмов для очистки загрязненных почв и отходов
2018-01-01
SCID: 54.1/jdppx9sf
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Achromobacter marplatensis 101nAcinetobacter sp. S-33oil-contaminated soil bioremediationoil-degrading microorganismstotal petroleum hydrocarbons
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Abstract (AI)
Two new strains Achromobacter marplatensis101n and Acinetobacter sp. S-33, capable of degrading 49 and 46% of oil within 7 days were isolated, identified, and characterized. The application of A. marplatensis 101n in combination with ammonium nitrate (100 mg·kg -1 ) for 30 days of cultivation resulted in the degradation of 49% of the initial total petroleum hydrocarbon content (274 g·kg -1 ) in the original highly acid (pH 4.9) oil-contaminated waste. Up to 30% of oil sludge added to a liquid mineral medium at a concentration of 15% was degraded after 10 days of cultivation of A. marplatensis 101n. Application of yellow alfalfa (Medicago falcata L.) plants with Acinetobacter sp. S-33 for bioremediation of oil-sludge-contaminated soil improved the quality of cleanup in comparison with the bacterium- or plant-only treatment. Inoculation of Acinetobacter sp. S-33 increased the growth of both roots and shoots by more than 40%, and positively influenced the soil microflora. We conclude that the new oil-degrading strains, Acinetobacter sp. S-33 and A. marplatensis 101n, can serve as the basis for new bioremediation agents for the treatment of oil contaminated soils and waste.
Key Findings
1
A. marplatensis 101n degraded up to 30% of oil sludge added to liquid mineral medium after 10 days.
2
A. marplatensis 101n with ammonium nitrate degraded 49% of total petroleum hydrocarbons in highly acidic oil-contaminated waste after 30 days.
3
Acinetobacter sp. S-33 increased alfalfa root and shoot growth by more than 40% and positively affected soil microflora.
4
Combining Acinetobacter sp. S-33 with yellow alfalfa improved oil-sludge soil cleanup compared with bacterium-only or plant-only treatments.
5
Two newly isolated strains, Achromobacter marplatensis 101n and Acinetobacter sp. S-33, degraded 49% and 46% of oil, respectively, within seven days.
Research Object
oil-contaminated soils and wastes, including highly acidic oil-contaminated waste, oil sludge, and oil-sludge-contaminated soil treated with Achromobacter marplatensis 101n and Acinetobacter sp. S-33
Research Subject
biodegradation of petroleum hydrocarbons and oil sludge, and the effects of strain–plant application on bioremediation efficiency, plant growth, and soil microflora
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2018-01-01
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