Microbiological treatment of post-industrial water: Example of efficient bioremediation of the heavily polluted Kalina pond, Poland

Q2 Social Sciences Journal of Water and Land Development Pub Date : 2024-01-09 DOI:10.24425/jwld.2024.149125
Katarzyna Starzec, Emilia Stańkowska, Paulina Supel, Robert Mazur, Piotr Surma, P. Kaszycki
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Abstract

The Kalina pond has been well known as a severely degraded area in the Silesia region, Poland. The environmental deterioration results from high contamination of water and bottom sediments with recalcitrant and toxic organic compounds, mainly phenol. The study was aimed at developing a bioremediation-based approach suitable for this type of polluted areas, involving microbiological treatment of water as a key and integral part of other necessary actions: mechanical interventions and the use of physical methods. During the initial biological treatment stage, autochthonous microorganisms were isolated from contaminated samples of water, soil and sediment, then subjected to strong selective pressure by incubation with the pollutants, and finally, cultivated to form a specialised microbial consortium consisting of five extremophilic bacterial strains. Consortium propagation and its biodegradation activity were optimised under variant conditions enabling bacteria to proliferate and to obtain high biomass density at large volumes allowing for the in situ application. After installing aeration systems in the pond, the consortium was surface-sprinkled to launch bioremediation and then both bacterial frequency and the contaminant level was systematically monitored. The complex remediation strategy proved efficient and was implemented on an industrial scale enabling successful remedial of the affected site. Treatment with the specifically targeted and adapted microbial consortium allowed for removal of most organic pollutants within a four-month season of 2022: the chemical oxygen demand (COD) value decreased by 72%, polyaromatic hydrocarbon (PAH) level by 97%, while the content of total phenols and other monoaromatic hydrocarbons (BTEX) dropped below the detection thresholds.
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工业废水的微生物处理:波兰卡利纳重度污染池塘的高效生物修复实例
众所周知,卡利纳池塘是波兰西里西亚地区一个严重退化的地区。环境恶化的原因是水和底部沉积物受到大量难降解有毒有机化合物(主要是苯酚)的污染。这项研究旨在开发一种适合这类污染地区的生物修复方法,其中包括对水进行微生物处理,将其作为其他必要行动(机械干预和物理方法的使用)的关键和组成部分。在最初的生物处理阶段,从受污染的水、土壤和沉积物样本中分离出自生微生物,然后通过与污染物一起培养,使其承受强大的选择压力,最后培养成由五种嗜极细菌菌株组成的专业微生物联合体。联合体的繁殖及其生物降解活性在不同条件下进行了优化,使细菌能够大量繁殖并获得高生物量密度,从而实现就地应用。在池塘中安装曝气系统后,对联合菌群进行表面喷洒以启动生物修复,然后对细菌频率和污染物水平进行系统监测。事实证明,这种复杂的修复策略非常有效,并已在工业规模上实施,成功修复了受影响的场地。在 2022 年为期四个月的时间里,使用专门针对和调整的微生物群进行处理,可以去除大部分有机污染物:化学需氧量(COD)值降低了 72%,多芳烃(PAH)含量降低了 97%,而总酚和其他单芳烃(BTEX)含量则降至检测阈值以下。
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来源期刊
Journal of Water and Land Development
Journal of Water and Land Development Social Sciences-Development
CiteScore
2.10
自引率
0.00%
发文量
0
审稿时长
14 weeks
期刊介绍: Journal of Water and Land Development - is a peer reviewed research journal published in English. Journal has been published continually since 1998. From 2013, the journal is published quarterly in the spring, summer, autumn, and winter. In 2011 and 2012 the journal was published twice a year, and between 1998 and 2010 it was published as a yearbook. . Papers may report the results of experiments, theoretical analyses, design of machines and mechanization systems, processes or processing methods, new materials, new measurements methods or new ideas in information technology. Topics: engineering and development of the agricultural environment, water managment in rural areas and protection of water resources, natural and economic functions of grassland.
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