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Degradation of phenol at high concentrations using immobilization of Pseudomonas putida P53 into sawdust entrapped in sodium-alginate beads

机译:使用将pseudomonas pivida p53固定到锯末溅射酸钠珠粒的高浓度下苯酚的降解

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摘要

Phenols are distributed either as natural or artificial mono-aromatic compounds in various environmental sites as major pollutants. The objective of this study was the immobilization of the phenol degrading bacteria P. putida P53 and A. scleromae P69 in sodium-alginate beads and sawdust as carriers and evaluate the biodegradation ability. The biodegradation ability of strains in free form were evaluated and P. putida P53 was shown to biodegrade up to 1,800 mg/L phenol. Bacterial biomass was prepared and attached to carrier with entrapment and attachment methods. Prepared beads were added to Erlenmeyer flasks containing different concentrations of phenol in BH medium (1,800, 2,200, 2,600 and 3,000 mg/L). According to the results, phenol biodegradation efficiency of immobilized bacteria in sawdust was more than free form. Strain P53 had better biodegradation than P69 strain. Attachment and entrapments into carriers had positive results, Scanning electron micrograph (SEM) images indicated that alginate beads were globular shapes (10 nm), and strains aggregated between the large cavities of the matrix. Comparison of sawdust and alginate as carriers for degradation of phenol at high concentrations demonstrated that sawdust improved biodegradation better, and immobilized P53 into sawdust entrapped in sodium-alginate beads can be used for biodegradation purposes.
机译:作为主要污染物的各种环境部位中的天然或人造单芳族化合物分发为主要污染物。本研究的目的是将酚类降解细菌P.Putida P53和A.Scleromae P69的固定在藻酸钠珠粒和锯末作为载体中的作为载体,并评估生物降解能力。评估菌株以自由形式的生物降解能力,并显示P.Putida p53,可生物降解至1,800mg / L苯酚。制备细菌生物质并用夹带和附着方法连接到载体上。将制备的珠子加入到含有不同浓度的BH培养基(1,800,2,200,2,600和3,000mg / L)中含有不同浓度的苯酚的Erlenmeyer烧瓶。根据结果​​,锯末固定细菌的苯酚生物降解效率不仅仅是自由形式。菌株P53比P69菌株更好的生物降解。附着和穴位进入载体具有阳性结果,扫描电子显微照片(SEM)图像表明,海藻酸盐珠子是球状(10nm),并且在基质的大空腔之间聚集的菌株。锯末和藻酸盐的比较作为高浓度降解苯酚的载体的载体表明,锯末改善了生物降解更好,并将P53固定在藻酸钠珠粒中捕获的锯末以用于生物降解目的。

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