Reducing energy demand by the combined application of advanced control strategies in a full scale WWTP

Author:

Bertanza G.1,Baroni P.2,Garzetti S.1,Martinelli F.1

Affiliation:

1. DICATAM – Department of Civil, Environmental, Architectural Engineering and Mathematics, Università degli Studi di Brescia, via Branze 43, 25123, Brescia, Italy

2. DII – Department of Information Engineering, Università degli Studi di Brescia, via Branze 38, 25123, Brescia, Italy

Abstract

Abstract Two advanced control strategies were applied in the secondary and tertiary stages, respectively, of a full scale wastewater treatment plant (WWTP). This has a nominal capacity of 330,000 population equivalent (PE), a complex configuration (having been upgraded several times through the years), and it faces significant seasonal load fluctuations (being located in a touristic area, in Northern Italy). The lifting station of the tertiary treatments (devoted to phosphorus precipitation and UV disinfection) was optimized by adjusting the pumped flowrate, depending on influent phosphorus concentration. A preliminary simulation showed that a 15% reduction of pumping energy could be achieved. This result was confirmed by field measurements. Moreover, a fuzzy control system was designed and applied to one of the six parallel nitrification reactors, yielding a reduction of more than 25% of the power requirement for aeration. Overall, the combined application of the two controllers led to a 7% reduction of the total energy consumption of the plant. This result is particularly promising given that the fuzzy controller was applied only to one of six biological reactors.

Funder

Ministero dell’Istruzione, dell’Università e della Ricerca

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

Reference22 articles.

1. Aeration control – a review;Water Science and Technology,2013

2. Process improvement and energy saving in a full scale wastewater treatment plant: air supply regulation by a fuzzy logic system;Environmental Technology,2006

3. An automatic controlled alternate oxic-anoxic process for small municipal wastewater treatment plants;Industrial and Engineering Chemistry Research,2003

4. Instrumentation, monitoring and realtime control strategies for efficient sewage treatment plant operation,2015

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