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菲在活性炭上的吸附通过特定细菌提高了矿化率。

Adsorption of phenanthrene on activated carbon increases mineralization rate by specific bacteria.

作者信息

Leglize Pierre, Alain Saada, Jacques Berthelin, Corinne Leyval

机构信息

Laboratoire des Interactions Microorganismes, Minéraux, Matière Organique dans les Sols (LIMOS) UMR 7137 CNRS-UHP Nancy I, Faculté des Sciences, BP 239, F54506 Vandoeuvre-lès-Nancy Cedex, France.

出版信息

J Hazard Mater. 2008 Mar 1;151(2-3):339-47. doi: 10.1016/j.jhazmat.2007.05.089. Epub 2007 Jun 7.

Abstract

Bioavailability of polycyclic aromatic hydrocarbons (PAH) in soil is affected by PAH sorption to solid phase. We studied the influence of activated carbon (AC) on phenanthrene (PHE) mineralization by five degrading bacterial strains isolated from contaminated soil. PHE adsorption on AC was important and reduced PHE aqueous concentration up to 90%. PHE degradation was improved in the presence of activated carbon with three of the bacterial strains, named NAH1, MATE3 and MATE7, which produced biofilms, whereas it was not improved with the two other ones, which did not produce biofilms, MATE10 and MATE12. Monitoring PHE distribution during incubation showed that aqueous PHE concentration was significantly higher with the biofilm-producing NAH1 than with MATE10. Bacterial adhesion on AC was also investigated. The precoating of AC with PHE increased NAH1 and MATE3 adhesion to the solid surface (>16 and >13%, respectively). Bacterial properties, such as biofilm production and adhesion to AC capacity seemed to be related to their ability to optimize PHE degradation by improving PHE diffusion and reducing diffusion path length.

摘要

土壤中多环芳烃(PAH)的生物有效性受PAH在固相中吸附作用的影响。我们研究了活性炭(AC)对从污染土壤中分离出的5株降解细菌菌株菲(PHE)矿化作用的影响。PHE在AC上的吸附作用很重要,可使PHE的水溶液浓度降低达90%。在活性炭存在的情况下,名为NAH1、MATE3和MATE7的3株能产生生物膜的细菌菌株对PHE的降解作用得到改善,而另外2株不产生生物膜的细菌菌株MATE10和MATE12对PHE的降解作用未得到改善。监测培养过程中PHE的分布情况表明,产生生物膜的NAH1菌株培养过程中水溶液中PHE的浓度显著高于MATE10菌株。还对细菌在AC上的黏附情况进行了研究。用PHE预涂AC可增加NAH1和MATE3对固体表面的黏附(分别增加>16%和>13%)。细菌特性,如生物膜的产生以及对AC的黏附能力,似乎与其通过改善PHE扩散和缩短扩散路径长度来优化PHE降解的能力有关。

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