Reuse of municipal wastewater for different purposes based on a modular treatment concept

Author:

Nahrstedt Andreas1,Gaba Anil1,Zimmermann Barbara1,Jentzsch Timo1,Kroemer Kerstin2,Tiemann Yannick2,Harsanyi Lajos3,Buchta Patrick3,Doelchow Uli4,Lipnizki Jens4,Mende Katharina5,Koch Thomas6,Rohn Anja1

Affiliation:

1. IWW Water Centre gGmbH, Moritzstr. 26, 45476 Mülheim an der Ruhr, Germany

2. Oldenburgisch-Ostfriesischer Wasserverband, Brake (Unterweser), Germany

3. inge water technologies GmbH, Greifenberg, Germany

4. LANXESS – IAB Ionenaustauscher GmbH Bitterfeld, Bitterfeld-Wolfen, Germany

5. SUEZ Water Technologies & Solutions, Ratingen, Germany

6. De.EnCon GmbH, Oldenburg, Germany

Abstract

Abstract Due to water scarcity and water pollution, the importance of water reuse is increasing more and more. As part of a German research programme on water reuse, the effluent of a wastewater treatment plant in the coastal region of northern Germany was used to investigate within the project MULTI-ReUse the direct treatment of tertiary effluent for usage in different applications in industry or agriculture. A modular constructed pilot system has been operated to optimize different treatment chains producing different water qualities simultaneously. The technological focus was put on membrane technologies, namely ultrafiltration (UF) and reverse osmosis (RO), and also biofiltration, adsorption and disinfection were part of the piloting. Beside the development of monitoring strategies for ensuring biological and chemical safe water qualities, the operational stability and the safe transport of water to the consumers were examined. The direct treatment of wastewater is a demanding task due to the lack of dilution and hydraulic retention time in the receiving water (environmental buffer). However, the multiple barrier approach guaranteed constant secure water. Fine adjustments of individual processes were particularly important. A stable operation of the UF could be realized in particular by using more or less intermittent inline coagulation as coating. The RO performance could be improved significantly by using monochloramine as disinfectant to minimize biofouling.

Funder

Bundesministerium für Bildung und Forschung

Publisher

IWA Publishing

Subject

Filtration and Separation,Water Science and Technology

Reference24 articles.

1. Coagulation and ultrafiltration: understanding of the key parameters of the hybrid process;Journal of Membrane Science,2008

2. In-out ultrafiltration in tertiary wastewater applications – comparison of different operational strategies;Desalination and Water Treatment,2017

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