Wastewater generation model to predict impacts of urine separation on wastewater treatment plants

Author:

Kleckers Jonas1ORCID,Abadi Abbas1,Brandherm Katrin Marie1,Haberkamp Jens1

Affiliation:

1. 1 Institute for Infrastructure Water Resources Environment (IWARU), FH Münster University of Applied Sciences, Corrensstraße 25, D-48149 Münster, Germany

Abstract

Abstract Wastewater treatment plants (WWTPs) are under increasing pressure to enhance resource efficiency and reduce emissions into water bodies. The separation of urine within the catchment area may be an alternative to mitigate the need for costly expansions of central WWTPs. While previous investigations assumed a spatially uniform implementation of urine separation across the catchment area, the present study focuses on an adapted stochastic wastewater generation model, which allows the simulation of various wastewater streams (e.g., urine) on a household level. This enables the non-uniform separation of urine across a catchment area. The model is part of a holistic modelling framework to determine the influence of targeted urine separation in catchments on the operation and emissions of central WWTPs, which will be briefly introduced. The wastewater generation model is validated through an extensive sampling and measurement series. Results based on observed and simulated wastewater quantity and quality for a catchment area of 366 residents for two dry weather days indicate the suitability of the model for wastewater generation and transport modelling. Based on this, four scenarios for urine separation were defined. The results indicate a potential influence of spatial distribution on the peaks of total nitrogen and total phosphorus.

Publisher

IWA Publishing

Reference31 articles.

1. One script to solve it all – an open-source-based framework for a digital workflow based on WWTP data

2. A Stochastic Model to Predict Flow, Nutrient and Temperature Changes in a Sewer under Water Conservation Scenarios

3. BDEW 2023 Drinking Water use in Households 2022 (in Germany). German Association of Energy and Water Industries (BDEW). Available from: https://www.bdew.de/service/daten-und-grafiken/trinkwasserverwendung-im-haushalt/ (accessed 05 December 2023).

4. Evaluation of new alternatives in wastewater treatment plants based on dynamic modelling and life cycle assessment (DM-LCA)

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