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Nutrient and organic pollutants removal in synthetic wastewater by Pseudomonas aeruginosa and Chryseobacterium sp./biofilter systems. | LitMetric

AI Article Synopsis

  • Nutrient and organic pollution threaten aquatic ecosystems by increasing organic carbon, reducing light penetration, and harming submerged vegetation.
  • The study focuses on the ability of bacterial strains Pseudomonas aeruginosa and Chryseobacterium sp. to create biofilms for filtering out pollutants from municipal wastewater.
  • Results indicate significant reductions in nutrient pollution (up to 91% for nitrite and 71% for phosphate) and lower chemical oxygen demand (COD) without additional aeration, highlighting potential cost-effective wastewater treatment solutions.

Article Abstract

Nutrient and organic pollution raise serious problems for aquatic ecosystems through the accumulation of organic carbon, the reduction of light penetration, and the loss of submerged aquatic vegetation. The over-enrichment of water with nitrogen and phosphorus leads to an imbalance in nutrient ratios, creating favorable conditions for toxic algal blooms, formation of oxygen-depleted water, etc. Thus, developing new technological solutions to reduce their amount is imperative. The present study investigates the capacity of Pseudomonas aeruginosa and Chryseobacterium sp. bacterial strains to form biofilm on solid support (biofilter), both individually and in tandem, using various analytical techniques. Also, the biofilm/biofilter systems' efficiency in removing nutrients such as nitrate, nitrite, ammonium, and phosphate ions from municipal wastewaters is assessed. The results showed a reduction of nutrient pollution of up to 91%, 98%, 55%, and 71% for nitrite, nitrate, ammonium, and phosphate ions. A reduction of about 78% of COD was also observed. The results were obtained in the absence of an additional aeration process, thus having a great potential for reducing total costs of wastewater treatment and developing ecological systems for wastewater management.

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Source
http://dx.doi.org/10.1007/s10661-022-10589-5DOI Listing

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