Pós-tratamento de efluente de reator anaeróbio por meio de wetlands construídos e filtração lenta
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Universidade Estadual de Ponta Grossa
Abstract
Concern about water scarcity has led to studies on new technologies used in
wastewater treatment, both for environmental preservation and in relation to the
possibility of reuse. Thus, this work studied the influence of different hydraulic
application rates (HAR) and organic loading rates (OLR) for Vertical Flow Constructed
Wetlands (VFCW) associated with slow double filtration (DF) as a technology for the
post-treatment of UASB reactor effluent for reuse. A system involving two WCFVs was
set up on a pilot scale using sand and pebbles as filter media and reed spp as a plant.
This system was associated with a DF which had a first filter made of sand and a
second made of activated carbon and zeolite. The rates studied were 200 mm.d-1/
26,8 g COD/m2; 400 mm.d-1/ 56 g COD/m2 and 600 mm.d-1/ 94,87g COD/m2; with 4
days on and 3 days off. Physico-chemical and microbiological analyses were carried
out. The results after going through WCFV showed that for TAH of 200 mm.d-1, the
reductions were 93,53% COD 97.2% BOD; 92,24% turbidity; 99,99% true color;
91,07% apparent color; 36,49% NTK; 36.2% N NH3; 66,6% Ph; 14,28% PT; 62,5% E-
coli and an increase of more than 100% in NO2 due to nitrification. At 400 mm.d-1, the
reductions were 90,56% COD; 96,4% BOD; 60,9% turbidity; 93,75% true color;
34,71% apparent color; 31,4% NTK; 33,38% N NH3; 93,75% E-coli, and an increase
in the concentrations of phenols, PT, NO3 and NO2. For the TAH of 600 mm.d-1, there
were reductions of 88% COD, 52,4% BOD; 65,93% turbidity; 51,72% true color;
55,65% apparent color; 11,28% NTK; 32,72% N NH3; 17.5% PT; and an increase in
the concentration of phenols, NO3, NO2 and E-coli. The higher the TAH, the worse the
removal results. After DF with a filtration rate of 13m3.m2.day, regardless of the TAH,
there was an increase in the removal of all parameters, with an emphasis on 99.9% in
NTK, NO3, NO2, phenols, PT and 10 5 E-coli for the TAH of 200mm.d1. Thus, it can
be concluded that the DF made it possible to increase the efficiency of the WCVF and
it was also possible to produce effluent for non-potable urban, agricultural, forestry,
environmental and industrial reuse according to CERH Resolution No. 122/2023 of the
state of Paraná/PR and meets all the reuse possibilities, except potable, in the
international legislation EPA/600/R- 12/618.
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MACHADO, Milene Fernanda Bornat. Pós-tratamento de efluente de reator anaeróbio por meio de wetlands construídos e filtração lenta. 2025. Dissertação (Mestrado em Química) - Universidade Estadual de Ponta Grossa, Ponta Grossa, 2022.