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溢油生物修复进展所面临的挑战
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作者 王红燕 《化工管理》 2018年第14期10-11,共2页
本文主要探讨在陆地和海洋环境溢油管理中所面临的挑战,如多环芳烃(PAH)生物降解的延迟、生物刺激引起的水体富营养化、溢油生物利用度差、以及该领域野外生物修复实验室研究的失败等问题,以确定需要进一步研究的领域。通过利用营养物... 本文主要探讨在陆地和海洋环境溢油管理中所面临的挑战,如多环芳烃(PAH)生物降解的延迟、生物刺激引起的水体富营养化、溢油生物利用度差、以及该领域野外生物修复实验室研究的失败等问题,以确定需要进一步研究的领域。通过利用营养物质和生物表面活性剂,重质芳香烃可能会被迅速的降解。缓释营养物质的应用或有机—无机营养的循环有助于防止土壤板结和不育。灌封剂和转基因微生物(GEMs)的使用可能会增加该领域生物强化的效率,通过利用生物表面活性剂消除原油的生物利用度差的问题。 展开更多
关键词 原油生物修复 陆地溢油控制 海上溢油控制 生物修复挑战
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Nutrient-enhanced n-alkanes biodegradation and succession of bacterial communities
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作者 SUN Yanyu WANG Hui +3 位作者 I LI Junde WANG Bin QI Cancan HU Xiaoke 《Journal of Oceanology and Limnology》 SCIE CAS CSCD 2018年第4期1294-1303,共10页
Bioremediation, is an effective and environment-friendly method of cleaning up crude oil pollution after an oil spill. However, the in situ bioremediation of crude oil is usually inhibited by deficiency of inorganic n... Bioremediation, is an effective and environment-friendly method of cleaning up crude oil pollution after an oil spill. However, the in situ bioremediation of crude oil is usually inhibited by deficiency of inorganic nutrients. To understand the effects of nutrient addition on the bioremediation of crude oil and the succession of bacterial communities during process of bioremediation, microcosms containing oilcontaminated sediments were constructed and biodegradation of crude oil was assessed based on the depletion of different ingredients. We used two culture-independent methods, denaturing gradient gel electrophoresis and a 16 S rRNA gene based clone library, to analyze the succession of bacterial communities. The results suggested n-alkanes were degraded after 30 days and that nutrient amendments significantly improved the efficiency of their biodegradation. Moreover, oil contamination and nutrient amendments could dramatically change bacterial community structures. Lower diversity was detected after being contaminated with oil. For instance, bacterial clones affiliated with the phylum Armatimonadetes, Firmicutes, Gemmatimonadetes, and Planctomycetes and the class Deltaproteobacteria and Epsilonproteobacteria could not be identified after 30 days of incubation with crude oil. However, "professional hydrocarbonocastic bacteria" became abundant in samples treated with oil during the bioremediation period, while these clones were almost completely absent from the control plots. Interestingly, bioinformatics analysis showed that even when dramatic differences in oil biodegradation efficiency were observed, bacterial communities in the plots with nutrient amendments were not significantly different from those in plots treated with oil alone. These findings indicated that nutrient amendments could stimulate the process of biodegradation but had less impact on bacterial communities. Overall, nutrient amendments might be able to stimulate the growth of n-alkane degrading bacteria. 展开更多
关键词 BIOREMEDIATION nutrient-enhanced bacterial communities N-ALKANE
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