This paper describes the advantages of thermophilic aerobic membrane reactor (TAMR) for the treatment of high strength wastewaters. The results were obtained from the monitoring of an industrial and a pilot scale plant. The average chemical oxygen demand (COD) removal yield was equal to 78% with an organic loading rate (OLR) up to 8-10 kgCOD m(-3) d(-1) despite significant scattering of the influent wastewater composition. Total phosphorus (TP) was removed with a rate of 90%, the most important removal mechanism being chemical precipitation (as hydroxyapatite, especially), which is improved by the continuous aeration that promotes phosphorus crystallization. Moreover, surfactants were removed with efficiency between 93% and 97%. Finally, the experimental work showed that thermophilic processes (TPPs) are complementary with respect to mesophilic treatments.

Why use a thermophilic aerobic membrane reactor for the treatment of industrial wastewater/liquid waste?

COLLIVIGNARELLI, MARIA CRISTINA;ABBA', ALESSANDRO
;
BERTANZA, GIORGIO
2015-01-01

Abstract

This paper describes the advantages of thermophilic aerobic membrane reactor (TAMR) for the treatment of high strength wastewaters. The results were obtained from the monitoring of an industrial and a pilot scale plant. The average chemical oxygen demand (COD) removal yield was equal to 78% with an organic loading rate (OLR) up to 8-10 kgCOD m(-3) d(-1) despite significant scattering of the influent wastewater composition. Total phosphorus (TP) was removed with a rate of 90%, the most important removal mechanism being chemical precipitation (as hydroxyapatite, especially), which is improved by the continuous aeration that promotes phosphorus crystallization. Moreover, surfactants were removed with efficiency between 93% and 97%. Finally, the experimental work showed that thermophilic processes (TPPs) are complementary with respect to mesophilic treatments.
2015
Environmental Engineering & Energy
Esperti anonimi
Inglese
Internazionale
ELETTRONICO
36
16
2115
2124
10
biological treatments; phosphorus removal; surfactants removal; thermophilic aerobic membrane reactor (TAMR); ultrafiltration
https://doi.org/10.1080/09593330.2015.1021860
no
3
info:eu-repo/semantics/article
262
Collivignarelli, MARIA CRISTINA; Abba', Alessandro; Bertanza, Giorgio
1 Contributo su Rivista::1.1 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/1099259
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