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首页> 外文期刊>International Biodeterioration & Biodegradation >Anaerobic degradation of PAHs in soil: impacts of concentration and amendment stability on the PAHs degradation and biogas production.
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Anaerobic degradation of PAHs in soil: impacts of concentration and amendment stability on the PAHs degradation and biogas production.

机译:土壤中PAHs的厌氧降解:浓度和修饰稳定性对PAHs降解和沼气生产的影响。

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摘要

In this study, the bioremediation of polycyclic aromatic hydrocarbons (PAHs)-contaminated soil under strict anaerobic-methanogenic conditions was systematically studied applying the central composite design approach. The effect of PAHs concentration and the stability of the compost as an organic amendment for anaerobic digestion were examined. In all assays, the used methanogenic consortium was able to degrade the PAHs although some inhibition effects were observed during the initial stage in some cases. The degradation rates varied between 31.4 and 90.6% during 50 days incubation period. The study demonstrated that the PAHs concentration influences the degradation rate where more degradation was observed by increasing the concentration of PAHs. However, the biogas production as a result of the digestion process was more influenced by the compost stability which also has its effect on the degradation rates as more degradation occurred with more stable compost, but more biogas was produced with less stable compost, which indicates that the biogas is mainly produced by the anaerobic digestion of the amended compost. Finally, it seems that compost addition is required to improve the process in some cases but in other circumstances it does not greatly improve the bioremediation of PAHs.
机译:在这项研究中,采用中央复合设计方法,系统地研究了在严格的厌氧-甲烷生成条件下多环芳烃(PAHs)污染土壤的生物修复。检查了PAHs浓度的影响和堆肥作为厌氧消化的有机改良剂的稳定性。在所有测定中,尽管在某些情况下在初始阶段观察到了某些抑制作用,但使用的产甲烷菌团能够降解PAHs。在50天的孵育期间,降解率在31.4%和90.6%之间变化。研究表明,PAHs的浓度会影响降解速率,通过增加PAHs的浓度可以观察到更多的降解。但是,消化过程产生的沼气更多地受到堆肥稳定性的影响,这对降解率也有影响,因为降解越多,堆肥越稳定,而产生的沼气越多,堆肥越不稳定,这表明沼气主要是通过对堆肥进行厌氧消化而产生的。最后,似乎在某些情况下需要添加堆肥来改善该过程,但在其他情况下,并不能大大改善PAHs的生物修复。

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