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Intensification of phenol biodegradation by humic substances

机译:腐殖质对苯酚的生物降解作用增强

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摘要

Phenol biodegradation was carried out in a batch system by the bacterial strain Cupriavidus metallidurans in the presence of potassium humate that was prepared by alkaline extraction from oxyhumolite. The experiments were focused on the assessment of the humate effect on biodegradation activity of the tested bacterial strain. The achieved results demonstrated that the humate has a positive influence on the biodegradation of phenol and reduces the incubation time necessary for phenol removal. Higher biodegradation rate and more intensive growth were observed during the cultivation in presence of humate in comparison to the cultivation without its addition. Adsorption of the humate on bacterial biomass was observed as well. Subsequently, a phenol biodegradation testing in a continuous-flow system using a biofilm reactor was also carried out. Although the reactor was inoculated by C. metallidurans only, the microbial composition under an aerobic non-aseptic condition during this long-term cultivation changed. The phenol removal efficiency obtained in the biofilm reactor was higher than 92% when phenol concentration in a treated medium was 1200 mg l(-1).
机译:在腐殖酸钾存在下,由腐殖酸铜绿细菌(Copriavidus metallidurans)在分批系统中对苯酚进行生物降解,腐殖酸钾是通过从腐殖土中碱提取而制备的。实验集中于评估腐殖酸盐对所测试细菌菌株的生物降解活性的影响。取得的结果表明,腐殖酸盐对苯酚的生物降解具有积极的影响,并减少了去除苯酚所需的孵育时间。与不添加腐植酸的培养相比,在腐植酸存在下的培养过程中观察到更高的生物降解速率和更密集的生长。还观察到腐殖酸盐在细菌生物质上的吸附。随后,还使用生物膜反应器在连续流系统中进行了苯酚生物降解测试。尽管反应器仅接种了金属梭状芽胞杆菌,但在长期培养过程中,在需氧非无菌条件下的微生物组成发生了变化。当处理介质中的苯酚浓度为1200 mg l(-1)时,在生物膜反应器中获得的苯酚去除效率高于92%。

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