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采用序批式反应器处理橄榄油厂废水:性能及微生物多样性评估

Treatment of olive mill wastewater through employing sequencing batch reactor: performance and microbial diversity assessment.

作者信息

Arous Fatma, Hamdi Chadlia, Kmiha Souhir, Khammassi Nadia, Ayari Amani, Neifar Mohamed, Mechichi Tahar, Jaouani Atef

机构信息

1Laboratory of Microorganisms and Active Biomolecules, Faculty of Sciences of Tunis, Institut Supérieur des Sciences Biologiques Appliquées de Tunis, University of Tunis El Manar, 9, Rue Zouhair Essafi, 1007 Tunis, Tunisia.

2University of Manouba, ISBST, BVBGR-LR11ES31, Biotechpole Sidi Thabet, Ariana, Tunisia.

出版信息

3 Biotech. 2018 Nov;8(11):481. doi: 10.1007/s13205-018-1486-6. Epub 2018 Nov 13.

Abstract

This work describes the performance of a sequencing batch reactor (SBR) and the involvement of a novel reconstituted bacterial consortium in olive mill wastewater (OMW) treatment. The organic loading rate applied to the SBR was serially increased in terms of initial COD from 10 to 75 g L to allow gradual acclimatization of activated sludge to high concentrations of toxic compounds in OMW. After the acclimatization period, up to 60% of the total COD content were effectively biodegraded from OMW at 75 g L COD within 30 day hydraulic retention time. The diversity and community composition of cultivable bacteria participating in the aerobic process of treating OMW were further assessed. A total of 91 bacterial strains were isolated from the reactor and analyzed by amplification of the 16S-23S rRNA internal transcribed spacer (ITS) region and by 16S rRNA gene sequencing. The most abundant phylum was (57.1%) followed by (35.2%) and (7.7%). The use of the Biolog® Phenotype Microarray system to evaluate the ability of isolated strains to utilize OMW phenolic compounds is reported in this work for the first time. Interestingly, results showed that all species tested were able to utilize phenolics as sole carbon and energy sources. The removals of COD and phenolics from undiluted OMW by the reconstituted bacterial consortium were almost similar to those obtained by the acclimatized activated sludge, which suggest that cultivable bacteria play the major role in OMW biodegradation. Phytotoxicity assays using tomato seeds showed a significant improvement of seed germination values for treated OMW. Our overall results suggest that the novel developed bacterial consortium could be considered as a good prospect for phenolics-rich wastewaters bioremediation applications.

摘要

本研究描述了序批式反应器(SBR)的运行情况以及一种新型重组细菌群落参与橄榄油厂废水(OMW)处理的过程。应用于SBR的有机负荷率以初始化学需氧量(COD)计从10 g/L逐步提高至75 g/L,以使活性污泥逐渐适应OMW中高浓度的有毒化合物。在适应期后,在30天的水力停留时间内,高达60%的总COD含量在75 g/L COD的条件下从OMW中被有效生物降解。进一步评估了参与OMW好氧处理过程的可培养细菌的多样性和群落组成。从反应器中总共分离出91株细菌菌株,并通过扩增16S - 23S rRNA内部转录间隔区(ITS)以及16S rRNA基因测序进行分析。最丰富的门是[具体门名1](57.1%),其次是[具体门名2](35.2%)和[具体门名3](7.7%)。本研究首次报道了使用Biolog®表型微阵列系统评估分离菌株利用OMW酚类化合物的能力。有趣的是,结果表明所有测试物种都能够将酚类物质作为唯一的碳源和能源。重组细菌群落对未稀释OMW中COD和酚类物质的去除效果与适应后的活性污泥几乎相似,这表明可培养细菌在OMW生物降解中起主要作用。使用番茄种子进行的植物毒性试验表明,处理后的OMW种子发芽值有显著提高。我们的总体结果表明,新开发的细菌群落有望用于富含酚类废水的生物修复应用。

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Characteristics and biodegradability of olive mill wastewaters.橄榄油厂废水的特性与生物降解性。
Environ Technol. 2016;37(10):1240-8. doi: 10.1080/09593330.2015.1110204. Epub 2015 Nov 18.

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