Lowering the fresh water footprint of cooling towers: A treatment-train for the reuse of discharged water consisting of constructed wetlands, nanofiltration, electrochemical oxidation and reverse osmosis

Author:

Wagner ThomasORCID,Saha PradipORCID,Bruning HarryORCID,Rijnaarts Huub

Publisher

Elsevier BV

Subject

Industrial and Manufacturing Engineering,Strategy and Management,General Environmental Science,Renewable Energy, Sustainability and the Environment,Building and Construction

Reference56 articles.

1. Recovery of cooling tower blowdown water through reverse osmosis (RO): review of water parameters affecting membrane fouling and pretreatment schemes;Ahmed;Desalination Water Treat.,2020

2. Factors affecting natural organic matter (NOM) and scaling fouling in NF membranes: a review;Al-Amoudi;Desalination,2010

3. Molecular characteristics related to the biodegradability of humic acid preparations;Almendros;Eur. J. Soil Sci.,2001

4. Membrane treatment of side-stream cooling tower water for reduction of water usage;Altman;Desalination,2012

5. Treatment vs. transport: a framework for assessing the trade-offs between on-site desalination and off-site water sourcing for an industrial case study;Belmondo Bianchi;J. Clean. Prod.,2021

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