Department of Civil Engineering, North Dakota State University, Fargo, ND 58105, USA.
Biodegradation. 2013 Apr;24(2):279-93. doi: 10.1007/s10532-012-9586-1. Epub 2012 Aug 15.
A comprehensive study on the effects of different carbon sources during the bacterial enrichment on the removal performances of benzene, toluene, ethylbenzene, and xylenes (BTEX) compounds when present as a mixture was conducted. Batch BTEX removal kinetic experiments were performed using cultures enriched with individual BTEX compounds or BTEX as a mixture or benzoate alone or benzoate-BTEX mixture. An integrated Monod-type non-linear model was developed and a ratio between maximum growth rate (μ max) and half saturation constant (Ks) was used to fit the non-linear model. A higher μ max/Ks indicates a higher affinity to degrade BTEX compounds. Complete removal of BTEX mixture was observed by all the enriched cultures; however, the removal rates for individual compounds varied. Degradation rate and the type of removal kinetics were found to be dependent on the type of carbon source during the enrichment. Cultures enriched on toluene and those enriched on BTEX mixture were found to have the greatest μ max/Ks and cultures enriched on benzoate had the least μ max/Ks. Removal performances of the cultures enriched on all different carbon sources, including the ones enriched on benzoate or benzoate-BTEX mixture were also improved during a second exposure to BTEX. A molecular analysis showed that after each exposure to the BTEX mixture, the cultures enriched on benzoate and those enriched on benzoate-BTEX mixture had increased similarities to the culture enriched on BTEX mixture.
进行了一项综合研究,以探讨在细菌富集过程中不同碳源对苯、甲苯、乙苯和二甲苯(BTEX)混合物去除性能的影响。使用单独的 BTEX 化合物或 BTEX 混合物或苯甲酸或苯甲酸-BTEX 混合物富集的培养物进行了 BTEX 去除动力学批实验。开发了一个综合的 Monod 型非线性模型,并使用最大生长速率(μ max)和半饱和常数(Ks)之间的比值来拟合非线性模型。较高的 μ max/Ks 表明对 BTEX 化合物的降解亲和力更高。所有富集培养物都观察到 BTEX 混合物的完全去除,但单个化合物的去除率有所不同。发现降解速率和去除动力学类型取决于富集过程中的碳源类型。在甲苯上富集的培养物和在 BTEX 混合物上富集的培养物被发现具有最大的 μ max/Ks,而在苯甲酸上富集的培养物具有最小的 μ max/Ks。在第二次暴露于 BTEX 时,在所有不同碳源上富集的培养物的去除性能也得到了提高,包括在苯甲酸或苯甲酸-BTEX 混合物上富集的培养物。分子分析表明,在每次暴露于 BTEX 混合物后,在苯甲酸上富集的培养物和在苯甲酸-BTEX 混合物上富集的培养物与在 BTEX 混合物上富集的培养物的相似性增加。