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首页> 外文期刊>The Korean journal of chemical engineering >Phenanthrene Biodegradation in Soil Slurry Systems: Influence of Salicylate and Triton X-100
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Phenanthrene Biodegradation in Soil Slurry Systems: Influence of Salicylate and Triton X-100

机译:土壤泥浆系统中菲的生物降解:水杨酸酯和Triton X-100的影响

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摘要

The effects of a nonionic surfactant (Triton X-100) and a metabolic inducer (salicylate) were investigated in order to enhance the biodegradation rate of phenanthrene in soil slurry systems. The addition of salicylate reduced the time for the complete degradation of phenanthrene up to about 3 times (12.9 mg/L-d) even at highly concentrated soils of 650 mg/kg. The inducer was beneficial not only by increasing metabolic activity of existing cells, but also by increasing cell mass since it was utilized as an additional carbon source. The fraction of fast growing bacteria in total with salicylate addition was much higher compared to that without salicylate. The addition of Triton X-100 ranging from 0 to 10 g/L increased the apparent solubility of phenanthrene in soil slurry, but significantly inhibited the phenanthrene degradation in both slurry and pure liquid systems without any inhibition to cell growth. The phenanthrene degradation was inhibited much more with increasing the surfactant concentration. The inhibition by surfactant addition might be due to the prevention of bacterial adhesion to phenanthrene sorbed to soil and/or decrease of micellar-phase bioavailability.
机译:研究了非离子表面活性剂(Triton X-100)和代谢诱导剂(水杨酸酯)的作用,以提高土壤浆料系统中菲的生物降解率。即使在650 mg / kg的高浓度土壤中,添加水杨酸盐也可以使菲完全降解的时间最多减少约3倍(12.9 mg / L-d)。诱导剂不仅通过增加现有细胞的代谢活性而受益,而且由于其被用作额外的碳源,因此通过增加细胞量也是有益的。与不添加水杨酸盐的细菌相比,添加水杨酸盐的快速生长细菌的比例要高得多。 Triton X-100的添加量为0至10 g / L,可提高菲在土壤浆液中的表观溶解度,但可显着抑制菲在浆液和纯液体系统中的降解,而对细胞生长没有任何抑制作用。随着表面活性剂浓度的增加,菲的降解受到更多的抑制。通过添加表面活性剂的抑制可能是由于防止细菌粘附至吸附在土壤上的菲和/或降低胶束相生物利用度。

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