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Characterization and optimization of EPSproducing and diesel oil-degrading Ochrobactrum anthropi MP3 isolated from refinery wastewater 被引量:3
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作者 Sugumar Ramasamy Prabhakaran Mathiyalagan Preethy Chandran 《Petroleum Science》 SCIE CAS CSCD 2014年第3期439-445,共7页
Petroleum refinery wastewater (PRW) containing hydrocarbon is highly toxic to the environment and the surrounding ecosystem. Proper treatment of the PRW effluent is necessary to remove the pollutants before discharg... Petroleum refinery wastewater (PRW) containing hydrocarbon is highly toxic to the environment and the surrounding ecosystem. Proper treatment of the PRW effluent is necessary to remove the pollutants before discharge. Bioremediation is considered to be a promising approach as it is eco- friendly and efficient. The exopolysaccharide (EPS) produced by the O. anthropi acts as a bioemulsifier and showed the highest emulsification activity of 60% on diesel. An EPS yield of about 0.42 g/L was obtained under optimized conditions. The carbohydrate and protein content of the EPS was found to be 71.1% and 19.7% respectively, showing the glycoprotein nature. The structural properties of EPS were analyzed by FT-IR and 1H NMR. The batch degradation of oil in PRW by O. anthropi was studied gravimetrically, and showed about 53% degradation in 7 days, indicating the strong ability of the isolated strain to degrade the hydrocarbons in PRW. 展开更多
关键词 Hydrocarbons Ochrobactrum anthropi MP3 EPS bioemulsifier DEGRADATION
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Isolation and Properties Characterization of Biosurfactant Synthesized by Pyrene Degrading Bacillus subtilis C19
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作者 Anondho Wijanarko Hanif Yuliani +1 位作者 Heri Hermansyah Muhamad Sahlan 《Journal of Chemistry and Chemical Engineering》 2012年第10期889-896,共8页
Bacillus subtilis strain C19, capable of ulilizing pyrene as a sole of carbon and energy, was isolated from marine Indonesian Archipelago. In biodegradation of pyrene by B. subtilis C19, various metabolites was isolat... Bacillus subtilis strain C19, capable of ulilizing pyrene as a sole of carbon and energy, was isolated from marine Indonesian Archipelago. In biodegradation of pyrene by B. subtilis C19, various metabolites was isolated and identified by chromatographic and spectral analyses. Lipopeptide biosurfactant was produced and it has stable emulsification activity. Biosurfactant was produced for enhancing pyrene uptake and bioavaibility. After 30 days incubation, there were no toxic metabolite and biodegradation of pyrene was already complete (only 0.02% undegradable metabolite). Therefore, this strain is suitable for PAHs (polyaromatic hydrocarbons) contaminated environment recovery. 展开更多
关键词 bioemulsifier Bacillus subtilis PYRENE BIODEGRADATION characterization.
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