首页> 外文期刊>International journal of applied mechanics >Analysis of the Bioaugmentation Potential of Pseudomonas putida OR45a and Pseudomonas putida KB3 in the Sequencing Batch Reactors Fed with the Phenolic Landfill Leachate
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Analysis of the Bioaugmentation Potential of Pseudomonas putida OR45a and Pseudomonas putida KB3 in the Sequencing Batch Reactors Fed with the Phenolic Landfill Leachate

机译:用酚醛垃圾填埋液渗滤液进给酚类填埋反应器,普赖达帕迪拉OR45A和假单胞菌普赖达KB3的生物沉积潜力分析

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The treatment of landfill leachate could be challenging for the biological wastewater treatment systems due to its high toxicity and the presence of poorly biodegradable contaminants. In this study, the bioaugmentation technology was successfully applied in sequencing batch reactors (SBRs) fed with the phenolic landfill leachate by inoculation of the activated sludge (AS) with two phenol-degrading Pseudomonas putida OR45a and Pseudomonas putida KB3 strains. According to the results, the SBRs bioaugmented with Pseudomonas strains withstood the increasing concentrations of the leachate. This resulted in the higher removal efficiency of the chemical oxygen demand (COD) of 79-86%, ammonia nitrogen of 87-88% and phenolic compounds of 85-96% as compared to 45%, 64%, and 50% for the noninoculated SBR. Simultaneously, the bioaugmentation of the AS allowed to maintain the high enzymatic activity of dehydrogenases, nonspecific esterases, and catalase in this ecosystem, which contributed to the higher functional capacity of indigenous microorganisms than in the noninoculated AS. Herein, the stress level experienced by the microorganisms in the SBRs fed with the leachate computed based on the cellular ATP measurements showed that the abundance of exogenous Pseudomonas strains in the bioreactors contributed to the reduction in effluent toxicity, which was reflected by a decrease in the stress biomass index to 32-45% as compared to the nonbioaugmented AS (76%).
机译:由于其高毒性和可生物降解的污染物的存在,因此对生物废水处理系统的治疗可能对生物废水处理系统有挑战性。在这项研究中,通过接种用两种酚类降解的Pseudomonas pivida OR45a和pseudomonas pivida Kb3菌株将生物沉积物渗滤液成功地应用于酚类垃圾填埋液渗滤液中的测序批量反应器(SBR)。根据结果​​,随着假鼠菌株的生物化菌株的SBR被用来越来越多的渗滤液浓度。这导致较高的除去效率为79-86%的化学需氧量(COD),氨氮为87-88%,酚类化合物为85-96%,与45%,64%和50%相比非常规的SBR。同时,使得允许维持该生态系统中的脱氢酶,非特异性酯酶和过氧化氢酶的高酶活性的生物沉积,这导致了本土微生物的较高功能能力而不是在非常规中。在此,通过基于细胞ATP测量计算的渗滤液供给的SBR中的微生物经历的应力水平表明,生物反应器中的海洋外源性假单胞菌菌株的丰度有助于降低流出毒性,这被降低反映了与非基础为(76%)相比,应力生物质指数至32-45%。

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