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 |
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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. |
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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 |
Author_xml | – sequence: 1 givenname: Elizandro Oliveira orcidid: 0000-0003-4250-6950 surname: Silveira fullname: Silveira, Elizandro Oliveira email: elizandrozz@yahoo.com.br 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 – sequence: 3 givenname: Eugênia Vargas surname: Hickmann fullname: Hickmann, Eugênia Vargas organization: Research Center On Energy and Sustainable Technologies – CPETS - University of Vale Do Taquari-UNIVATES – sequence: 4 givenname: Odorico surname: Konrad fullname: Konrad, Odorico organization: Research Center On Energy and Sustainable Technologies – CPETS - University of Vale Do Taquari-UNIVATES – sequence: 5 givenname: Carlos Alexandre surname: Lutterbeck fullname: Lutterbeck, Carlos Alexandre organization: Laboratory of Ecotechnology and Applied Limnology, Institute of Hydraulic Research - IPH - Federal University of Rio Grande Do Sul - UFRGS – sequence: 6 givenname: Ênio Leandro surname: Machado fullname: Machado, Ênio Leandro organization: Graduate Program in Environmental Technology, University of Santa Cruz Do Sul - UNISC – sequence: 7 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 |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/36131177$$D View this record in MEDLINE/PubMed |
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CitedBy_id | crossref_primary_10_1016_j_dwt_2024_100205 crossref_primary_10_3390_resources12100119 crossref_primary_10_1007_s11356_024_32560_2 crossref_primary_10_1016_j_biortech_2024_131003 |
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Keywords | Microalgae and wastewaters Biogas Biomass Constructed wetland |
Language | English |
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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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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 |
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