SIMULATED DAIRY WASTEWATER TREATMENT IN A PILOT PLANT SCALE MAGNETO-ACTIVE HYBRID ANAEROBIC BIOFILM REACTOR (MA-HABR)
Abstract The aim of this study was to determine the effects of magneto-active microporous packing media manufactured by extrusion technology and modified by the addition of relevant amounts of metal catalysts and magnetic activation on the effectiveness of simulated dairy wastewater (SDW) treatment...
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Brazilian Society of Chemical Engineering
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doaj-cdf0dd8944794c298095cb0fef051d1e2020-11-24T23:56:30ZengBrazilian Society of Chemical EngineeringBrazilian Journal of Chemical Engineering1678-438335255356210.1590/0104-6632.20180352s20170036S0104-66322018000200553SIMULATED DAIRY WASTEWATER TREATMENT IN A PILOT PLANT SCALE MAGNETO-ACTIVE HYBRID ANAEROBIC BIOFILM REACTOR (MA-HABR)Marcin DębowskiMarcin ZielińskiMarta KisielewskaMirosław KrzemieniewskiMonika MakowskaMarian GrądkowskiAneta Tor-ŚwiątekAbstract The aim of this study was to determine the effects of magneto-active microporous packing media manufactured by extrusion technology and modified by the addition of relevant amounts of metal catalysts and magnetic activation on the effectiveness of simulated dairy wastewater (SDW) treatment and biogas productivity in a pilot plant scale hybrid anaerobic biofilm reactor with full mixing. The best performance was found at an organic loading rate (OLR) in the range 6.0 - 8.0 kg COD/m3·d, where the chemical oxygen demand (COD) removal was about 80%, the biogas yield ranged from 256.7 - 310.9 L/kg CODremoved, the methane production ranged from 420.6 - 557.1 L/d and total phosphorus removal ranged from 82.9 - 90.7%. The study demonstrated that the application of the innovative packing media in the biofilm-bed reactor enhanced the sorption of organic matter, biogas productivity and the binding of biogenic compounds.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0104-66322018000200553&lng=en&tlng=enanaerobic digestionbiogasdairy industrymagneto-active support materialphosphorus removal |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Marcin Dębowski Marcin Zieliński Marta Kisielewska Mirosław Krzemieniewski Monika Makowska Marian Grądkowski Aneta Tor-Świątek |
spellingShingle |
Marcin Dębowski Marcin Zieliński Marta Kisielewska Mirosław Krzemieniewski Monika Makowska Marian Grądkowski Aneta Tor-Świątek SIMULATED DAIRY WASTEWATER TREATMENT IN A PILOT PLANT SCALE MAGNETO-ACTIVE HYBRID ANAEROBIC BIOFILM REACTOR (MA-HABR) Brazilian Journal of Chemical Engineering anaerobic digestion biogas dairy industry magneto-active support material phosphorus removal |
author_facet |
Marcin Dębowski Marcin Zieliński Marta Kisielewska Mirosław Krzemieniewski Monika Makowska Marian Grądkowski Aneta Tor-Świątek |
author_sort |
Marcin Dębowski |
title |
SIMULATED DAIRY WASTEWATER TREATMENT IN A PILOT PLANT SCALE MAGNETO-ACTIVE HYBRID ANAEROBIC BIOFILM REACTOR (MA-HABR) |
title_short |
SIMULATED DAIRY WASTEWATER TREATMENT IN A PILOT PLANT SCALE MAGNETO-ACTIVE HYBRID ANAEROBIC BIOFILM REACTOR (MA-HABR) |
title_full |
SIMULATED DAIRY WASTEWATER TREATMENT IN A PILOT PLANT SCALE MAGNETO-ACTIVE HYBRID ANAEROBIC BIOFILM REACTOR (MA-HABR) |
title_fullStr |
SIMULATED DAIRY WASTEWATER TREATMENT IN A PILOT PLANT SCALE MAGNETO-ACTIVE HYBRID ANAEROBIC BIOFILM REACTOR (MA-HABR) |
title_full_unstemmed |
SIMULATED DAIRY WASTEWATER TREATMENT IN A PILOT PLANT SCALE MAGNETO-ACTIVE HYBRID ANAEROBIC BIOFILM REACTOR (MA-HABR) |
title_sort |
simulated dairy wastewater treatment in a pilot plant scale magneto-active hybrid anaerobic biofilm reactor (ma-habr) |
publisher |
Brazilian Society of Chemical Engineering |
series |
Brazilian Journal of Chemical Engineering |
issn |
1678-4383 |
description |
Abstract The aim of this study was to determine the effects of magneto-active microporous packing media manufactured by extrusion technology and modified by the addition of relevant amounts of metal catalysts and magnetic activation on the effectiveness of simulated dairy wastewater (SDW) treatment and biogas productivity in a pilot plant scale hybrid anaerobic biofilm reactor with full mixing. The best performance was found at an organic loading rate (OLR) in the range 6.0 - 8.0 kg COD/m3·d, where the chemical oxygen demand (COD) removal was about 80%, the biogas yield ranged from 256.7 - 310.9 L/kg CODremoved, the methane production ranged from 420.6 - 557.1 L/d and total phosphorus removal ranged from 82.9 - 90.7%. The study demonstrated that the application of the innovative packing media in the biofilm-bed reactor enhanced the sorption of organic matter, biogas productivity and the binding of biogenic compounds. |
topic |
anaerobic digestion biogas dairy industry magneto-active support material phosphorus removal |
url |
http://www.scielo.br/scielo.php?script=sci_arttext&pid=S0104-66322018000200553&lng=en&tlng=en |
work_keys_str_mv |
AT marcindebowski simulateddairywastewatertreatmentinapilotplantscalemagnetoactivehybridanaerobicbiofilmreactormahabr AT marcinzielinski simulateddairywastewatertreatmentinapilotplantscalemagnetoactivehybridanaerobicbiofilmreactormahabr AT martakisielewska simulateddairywastewatertreatmentinapilotplantscalemagnetoactivehybridanaerobicbiofilmreactormahabr AT mirosławkrzemieniewski simulateddairywastewatertreatmentinapilotplantscalemagnetoactivehybridanaerobicbiofilmreactormahabr AT monikamakowska simulateddairywastewatertreatmentinapilotplantscalemagnetoactivehybridanaerobicbiofilmreactormahabr AT mariangradkowski simulateddairywastewatertreatmentinapilotplantscalemagnetoactivehybridanaerobicbiofilmreactormahabr AT anetatorswiatek simulateddairywastewatertreatmentinapilotplantscalemagnetoactivehybridanaerobicbiofilmreactormahabr |
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1725458139057225728 |