Energy recovery by anaerobic digestion of algal biomass from integrated microalgae/constructed wetland wastewater treatment

The present study evaluated the potential for biogas generation from microalgae (MA) biomass and macrophytes used in vertical flow constructed wetlands (VFCW). The samples were obtained by separation and collection of MA after a hydraulic retention time of 14 days, frozen and taken to the laboratory...

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Published in:Environmental science and pollution research international Vol. 30; no. 5; pp. 13317 - 13326
Main Authors: Silveira, Elizandro Oliveira, Felizzola, Nathalia Mendes, Hickmann, Eugênia Vargas, Konrad, Odorico, Lutterbeck, Carlos Alexandre, Machado, Ênio Leandro, Rodrigues, Lúcia Ribeiro
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Language:English
Published: Berlin/Heidelberg Springer Berlin Heidelberg 01-01-2023
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Abstract The present study evaluated the potential for biogas generation from microalgae (MA) biomass and macrophytes used in vertical flow constructed wetlands (VFCW). The samples were obtained by separation and collection of MA after a hydraulic retention time of 14 days, frozen and taken to the laboratory, while the macrophytes of VFCW were obtained, by pruning, every 6 months. The obtained results presented reductions of 63.22% and 61.18% for COD and BOD 5 , respectively, and removal efficiencies of 53.91% for TP and 99.98% de N-NH 3 . Average biogas generation was 2322.51 NmL-gSV −1 with 54.61% CH 4 (winter/2019), 4491.47 Nml-gSV −1 with 57.17% CH 4 (spring/2019), 680.78 NmL-gSV −1 with 16.04% CH 4 (summer/2020), and 681.0 NmL-gSV −1 with 19.86% CH 4 (autumn/2020) for MA biomass and generation of biogas of 3826.70 NmL-gSV −1 with 44.26% CH 4 for VFCW biomass in winter and spring/2019 and of 829.68 NmL-gSV −1 with 17.06% CH 4 in summer and autumn/2020. Regarding electricity generation, the present work obtained 1.50 kWh/m 3 , therefore reaching similar values to other studies that used more traditional biomass sources.
AbstractList The present study evaluated the potential for biogas generation from microalgae (MA) biomass and macrophytes used in vertical flow constructed wetlands (VFCW). The samples were obtained by separation and collection of MA after a hydraulic retention time of 14 days, frozen and taken to the laboratory, while the macrophytes of VFCW were obtained, by pruning, every 6 months. The obtained results presented reductions of 63.22% and 61.18% for COD and BOD 5 , respectively, and removal efficiencies of 53.91% for TP and 99.98% de N-NH 3 . Average biogas generation was 2322.51 NmL-gSV −1 with 54.61% CH 4 (winter/2019), 4491.47 Nml-gSV −1 with 57.17% CH 4 (spring/2019), 680.78 NmL-gSV −1 with 16.04% CH 4 (summer/2020), and 681.0 NmL-gSV −1 with 19.86% CH 4 (autumn/2020) for MA biomass and generation of biogas of 3826.70 NmL-gSV −1 with 44.26% CH 4 for VFCW biomass in winter and spring/2019 and of 829.68 NmL-gSV −1 with 17.06% CH 4 in summer and autumn/2020. Regarding electricity generation, the present work obtained 1.50 kWh/m 3 , therefore reaching similar values to other studies that used more traditional biomass sources.
The present study evaluated the potential for biogas generation from microalgae (MA) biomass and macrophytes used in vertical flow constructed wetlands (VFCW). The samples were obtained by separation and collection of MA after a hydraulic retention time of 14 days, frozen and taken to the laboratory, while the macrophytes of VFCW were obtained, by pruning, every 6 months. The obtained results presented reductions of 63.22% and 61.18% for COD and BOD , respectively, and removal efficiencies of 53.91% for TP and 99.98% de N-NH . Average biogas generation was 2322.51 NmL-gSV with 54.61% CH (winter/2019), 4491.47 Nml-gSV with 57.17% CH (spring/2019), 680.78 NmL-gSV with 16.04% CH (summer/2020), and 681.0 NmL-gSV with 19.86% CH (autumn/2020) for MA biomass and generation of biogas of 3826.70 NmL-gSV with 44.26% CH for VFCW biomass in winter and spring/2019 and of 829.68 NmL-gSV with 17.06% CH in summer and autumn/2020. Regarding electricity generation, the present work obtained 1.50 kWh/m , therefore reaching similar values to other studies that used more traditional biomass sources.
Author Konrad, Odorico
Silveira, Elizandro Oliveira
Hickmann, Eugênia Vargas
Felizzola, Nathalia Mendes
Machado, Ênio Leandro
Lutterbeck, Carlos Alexandre
Rodrigues, Lúcia Ribeiro
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  givenname: Elizandro Oliveira
  orcidid: 0000-0003-4250-6950
  surname: Silveira
  fullname: Silveira, Elizandro Oliveira
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  organization: Laboratory of Ecotechnology and Applied Limnology, Institute of Hydraulic Research - IPH - Federal University of Rio Grande Do Sul - UFRGS
– sequence: 2
  givenname: Nathalia Mendes
  surname: Felizzola
  fullname: Felizzola, Nathalia Mendes
  organization: Laboratory of Ecotechnology and Applied Limnology, Institute of Hydraulic Research - IPH - Federal University of Rio Grande Do Sul - UFRGS
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  givenname: Eugênia Vargas
  surname: Hickmann
  fullname: Hickmann, Eugênia Vargas
  organization: Research Center On Energy and Sustainable Technologies – CPETS - University of Vale Do Taquari-UNIVATES
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  surname: Konrad
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  givenname: Carlos Alexandre
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  givenname: Ênio Leandro
  surname: Machado
  fullname: Machado, Ênio Leandro
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  givenname: Lúcia Ribeiro
  surname: Rodrigues
  fullname: Rodrigues, Lúcia Ribeiro
  organization: Laboratory of Ecotechnology and Applied Limnology, Institute of Hydraulic Research - IPH - Federal University of Rio Grande Do Sul - UFRGS
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Issue 5
Keywords Microalgae and wastewaters
Biogas
Biomass
Constructed wetland
Language English
License 2022. The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature.
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Snippet The present study evaluated the potential for biogas generation from microalgae (MA) biomass and macrophytes used in vertical flow constructed wetlands (VFCW)....
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StartPage 13317
SubjectTerms Anaerobiosis
Aquatic Pollution
Atmospheric Protection/Air Quality Control/Air Pollution
Biofuels
Biomass
Earth and Environmental Science
Ecotoxicology
Environment
Environmental Chemistry
Environmental Health
Microalgae
Research Article
Waste Disposal, Fluid
Waste Water Technology
Wastewater
Water Management
Water Pollution Control
Water Purification - methods
Wetlands
Title Energy recovery by anaerobic digestion of algal biomass from integrated microalgae/constructed wetland wastewater treatment
URI https://link.springer.com/article/10.1007/s11356-022-23019-3
https://www.ncbi.nlm.nih.gov/pubmed/36131177
https://search.proquest.com/docview/2716935709
https://pubmed.ncbi.nlm.nih.gov/PMC9491671
Volume 30
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