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首页> 外文期刊>Environmental Science and Pollution Research >Enhancement of nitrate-induced bioremediation in marine sediments contaminated with petroleum hydrocarbons by using microemulsions
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Enhancement of nitrate-induced bioremediation in marine sediments contaminated with petroleum hydrocarbons by using microemulsions

机译:通过使用微乳液增强硝酸盐诱导的被石油烃污染的海洋沉积物中的生物修复

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The effect of microemulsion on the biodegradation of total petroleum hydrocarbons (TPH) in nitrate-induced bioremediation of marine sediment was investigated in this study. It was shown that the microemulsion formed with non-ionic surfactant polyoxyethylene sorbitan monooleate (Tween 80), 1-pentanol, linseed oil, and either deionized water or seawater was stable when subjected to dilution by seawater. Desorption tests revealed that microemulsion was more effective than the Tween 80 solution or the solution containing Tween 80 and 1-pentanol to desorb TPH from marine sediment. In 3 weeks of bioremediation treatment, the injection of microemulsion and NO3 (-) seems to have delayed the autotrophic denitrification between NO3 (-) and acid volatile sulfide (AVS) in sediment compared to the control with NO3 (-) injection alone. However, after 6 weeks of treatment, the delaying effect of microemulsion on the autotrophic denitrification process was no longer observed. In the meantime, the four injections of microemulsion and NO3 (-) resulted in as high as 29.73 % of TPH degradation efficiency, higher than that of two injections of microemulsion and NO3 (-) or that of four or two injections of NO3 (-) alone. These results suggest that microemulsion can be potentially applied to enhance TPH degradation in the nitrate-induced bioremediation of marine sediment.
机译:在本研究中,研究了微乳液对硝酸盐诱导的海洋沉​​积物生物修复中总石油烃(TPH)生物降解的影响。结果表明,当用海水稀释时,由非离子表面活性剂聚氧乙烯脱水山梨醇单油酸酯(吐温80),1-戊醇,亚麻子油和去离子水或海水形成的微乳液是稳定的。解吸测试表明,微乳液比Tween 80溶液或包含Tween 80和1-戊醇的溶液更有效地从海洋沉积物中解吸TPH。在3周的生物修复处理中,与单独注入NO3(-)的对照相比,微乳液和NO3(-)的注入似乎延迟了沉积物中NO3(-)和酸性挥发性硫化物(AVS)之间的自养反硝化。但是,在治疗6周后,不再观察到微乳对自养反硝化过程的延迟作用。同时,四次微乳液和NO3(-)注射产生的TPH降解效率高达29.73%,高于两次微乳液和NO3(-)或四或两次NO3(-)注射的TPH降解效率。 )一个人。这些结果表明,微乳剂可潜在地用于增强硝酸盐诱导的海洋沉​​积物生物修复过程中的TPH降解。

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