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A novel approach for bioremediation of a coastal marine wastewater effluent based on artificial microbial mats
Zamora-Castro, J.; Paniagua-Michel, J.; Lezama-Cervantes, C. (2008). A novel approach for bioremediation of a coastal marine wastewater effluent based on artificial microbial mats. Mar. Biotechnol. 10(2): 181-189. https://dx.doi.org/10.1007/s10126-007-9050-0
In: Marine Biotechnology. Springer-Verlag: New York. ISSN 1436-2228; e-ISSN 1436-2236, meer
Peer reviewed article  

Beschikbaar in  Auteurs 

Trefwoorden
    Ammonium
    Bioremediation
    Chemical compounds > Phosphorus compounds > Phosphates > Orthophosphate
    Chemical elements > Nonmetals > Atmospheric gases > Nitrogen
    Chemical elements > Nonmetals > Phosphorus
    Microbial mats
    Microorganisms > Bacteria
    Water treatment > Waste treatment > Wastewater treatment
    Marien/Kust
Author keywords
    bioremediation; coastal effluent; microbial mats; polyester support;wastewater

Auteurs  Top 
  • Zamora-Castro, J.
  • Paniagua-Michel, J.
  • Lezama-Cervantes, C.

Abstract
    A novel alternative for wastewater effluent bioremediation was developed using constructed microbial mats on low-density polyester. This biotechnology showed high removal efficiencies for nitrogen and phosphorous in a short retention time (48 h): 94% for orthophosphate (7.78 g PO43- - P m(3) d(-1)), 79% for ammonium (11.30 g NH4+ - N m(-3) d(-1)), 78% for nitrite (7.46 g NO2- - N m(-3) d(-1)), and 83% for nitrate (8.55 g NO2- - N m(-3) d(-1)). The microbial mats were dominated by Cyanobacteria genera such as Chroococcus sp., Lyngbya sp., and bacteria of the subclass Proteobacteria representative of the Eubacteria Domain. Nitzschia sp. was the dominant Eukaryote Domain. Various N and P substrates in the wastewater permit the growth of self-forming and self-sustaining bacterial, microalgal, and cyanobacterial communities on a polyester support. The result is the continuous, self-sufficient growth of microbial mats. This is an innovative, economical, and environmentally safe alternative for the treatment of wastewater effluents in coastal marine environments.

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