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May 8, 2026Water0 citationsOpen Access

Regulatory-Aligned Energy Assessment for Wastewater Collection Networks Under the Scope of the UWWTD 2024/3019

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CJCatarina JorgeRBRita Salgado BritoMAMaria do Céu Almeida

Key Points

  • This research aims to create a framework for assessing energy performance in wastewater collection networks as required by the UWWTD.
  • Developed a data-driven framework using Portuguese regulator datasets and published sources.
  • Reorganized existing metrics into categories such as energy use components, including structural and operational aspects.
  • Identified gaps in current assessment methods, emphasizing the need for improved measurement and disaggregation.
  • Preliminary analysis indicates available datasets can support assessments of energy intensity and GHG emissions.
  • Identified specific energy shares related to pumping and inflow-driven excess volumes.
  • Highlighted critical gaps in subsystem disaggregation and measurement granularity for effective UWWTD implementation.

Abstract

The revised EU Urban Wastewater Treatment Directive (UWWTD, EU 2024/3019) expands the scope of the previous directive (Council Directive 91/271/EEC, 1991) by explicitly including combined sewer systems, stormwater discharges, and overflow events while promoting energy neutrality and reducing greenhouse gas (GHG) emissions across urban wastewater systems. Although the Directive establishes energy accountability at the system level, it does not define how energy performance in wastewater collection networks should be structured, assessed, or benchmarked, resulting in a significant implementation gap. This paper presents a novel, regulatory-aligned, data-driven framework to organise, analyse, and interpret energy-relevant information in support of UWWTD requirements, with specific focus on wastewater collection networks. Using Portuguese regulator datasets, supplemented with published sources, existing metrics are reorganised into energy-significant dimensions that differentiate structural, excess-driven, operational, and renewable-related components of energy use. The preliminary findings show that available datasets already support a screening-level diagnosis of specific energy intensity, pumping-related energy shares, inflow-driven excess volumes, and associated GHG emissions. However, important gaps remain regarding subsystem disaggregation, hydraulic normalisation, and measurement granularity. The study restructures existing information into a novel audit-compatible framework, proposes additional metrics and measurement requirements, and identifies measures to facilitate UWWTD implementation. Although developed for the Portuguese context, the framework offers a scalable pathway for integrating wastewater collection networks into energy neutrality governance across European Member States.

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Cite This Study

Jorge et al. (2026) studied this question.

synapsesocial.com/papers/69fd7f86bfa21ec5bbf07fb9https://doi.org/10.3390/w18091109
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