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首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Treatment of petroleum refinery sludge by petroleum degrading bacterium Stenotrophomonas pavanii IRB19 as an efficient novel technology
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Treatment of petroleum refinery sludge by petroleum degrading bacterium Stenotrophomonas pavanii IRB19 as an efficient novel technology

机译:石油降解细菌石油炼油厂污泥的治疗斯内诺科·IRB19作为一种有效的新技术

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Petroleum hydrocarbons (PHCs) in petroleum refinery sludge (PRS) are the most adverse components because of their toxic nature, which are harmful to human health and the aquatic ecosystem. This study aimed to identify and characterize an indigenous bacterium isolated from PRS of Indian oil corporation ltd. (IOCL), Haldia, India, and evaluate its performance for biodegradation of total petroleum hydrocarbon (TPH) of PRS. The bacterium molecularly characterized as Stenotrophomonas sp. IRB19 by 16S rRNA sequencing and phylogenetic analysis. The strain IRB19 showed a significant ability to utilize four different oils (kerosene, diesel, petrol and hexadecane) in-vitro. IRB19 could able to degrade up to 65 +/- 2.4% of TPH in 28 d of incubation. Solvent extraction study showed that PRS contain 180.57 +/- 3.44 g kg(-1) of TPH and maltene fraction composed of aliphatic, aromatics and polar components of 52 +/- 4, 39 +/- 2 and 9 +/- 1%, respectively. The TPH degradation best fitted for the Gompertz model and followed the first-order kinetics having the rate constant (k) and half-life period (t (1/2)) of 0.036 d(-1) and 19 d, respectively. Results of this study verified the suitability of the novel strain IRB19 for the biodegradation of PHCs.
机译:石油炼油厂污泥(PHCS)的石油烃(PHC)是由于其毒性本质,对人类健康和水生生态系统有害。本研究旨在识别和表征印度石油公司有限公司的PRS分离的土着细菌。 (IOCL),Haldia,India,并评估其对PRS总石油烃(TPH)的生物降解的性能。细菌分子表征为Stenotophomonas sp。 IRB19到16S rRNA测序和系统发育分析。菌株IRB19显示出在体外使用四种不同的油(煤油,柴油,汽油和十六烷)的显着能力。 IRB19能够在28 d孵育中降解高达65 +/- 2.4%的TPH。溶剂萃取研究表明,PRS含有180.57 +/- 3.44g kg(-1)的TPH和马来烯部分,由脂族,芳烃和极性组分组成,52 +/- 4,39 +/- 2和9 +/- 1% , 分别。 TPH降解最适合Gompertz模型,并遵循具有0.036d(-1)和19d的速率常数(k)和半衰期(T(1/2))的一阶动力学。该研究的结果验证了新型菌株IRB19对PHC的生物降解的适用性。

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