Performance and bacterial community dynamics of a CANON bioreactor acclimated from high to low operational temperatures
Autor: | Franscisco Osorio, Maria Jesus Garcia-Ruiz, Alejandro Gonzalez-Martinez, Barbara Muñoz-Palazon, Alejandro Rodriguez-Sanchez, Carmen Cortes-Lorenzo, Riku Vahala |
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Jazyk: | angličtina |
Rok vydání: | 2016 |
Předmět: |
General Chemical Engineering
02 engineering and technology Wastewater treatment 010501 environmental sciences Membrane bioreactor NITRIFICATION 01 natural sciences Industrial and Manufacturing Engineering chemistry.chemical_compound Anammox WASTE-WATER Bioreactor Environmental Chemistry Low temperature Ammonium Nitrite CANON Nitrosomonas ta218 0105 earth and related environmental sciences MEMBRANE BIOREACTOR biology PARTIAL NITRITATION/ANAMMOX MICROBIAL COMMUNITY LAB-SCALE Environmental engineering Pyrosequencing General Chemistry Nitrogen removal 021001 nanoscience & nanotechnology biology.organism_classification Anaerobic digestion chemistry Environmental chemistry AUTOTROPHIC NITROGEN-REMOVAL Nitrification SP-NOV 0210 nano-technology OXIDIZING BACTERIA SYSTEM |
Zdroj: | CHEMICAL ENGINEERING JOURNAL. 287:557-567 |
ISSN: | 1385-8947 |
Popis: | In this study, a lab-scale CANON bioreactor was operated for 260 days, decreasing operational temperature from 35 °C to 15 °C and from 466 to 100 mg-N L−1 ammonium. This was done in order to check the feasibility of the acclimation of CANON biomass treating anaerobic digestion supernatant to B-stage influent wastewater operational conditions. Results showed that decrease in temperature posed an impact over the performance of the CANON bioreactor as well as over its bacterial assemblage. Nitrogen removal efficiency showed a moderate decrease when the system was acclimated from 35 °C to 25 °C, but it decreased dramatically in the acclimation from 25 °C to 15 °C. The decrease in temperature and influent ammonium concentration posed an impact over the bacterial community structure of the system. Ammonium oxidizing bacteria changed from Nitrosomonas, Nitrosospira or Nitrosovibrio genera at high temperature and influent ammonium to Prosthecobacter at low temperature and low ammonium. As well, dominant anammox bacteria genus changed from Candidatus Brocadia to Candidatus Anammoxoglobus during acclimation. Proliferation of nitrite oxidizing bacteria only occurred under low temperature and influent ammonium conditions with growth of Rhodanobacter genus. |
Databáze: | OpenAIRE |
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