Phosphorus recovery from municipal wastewater via a two-step process of ozonation and crystallization: process development, optimization and upscaling
Author:
Affiliation:
1. Department of Chemical Engineering, Biotechnology, and Environmental Technology
2. University of Southern Denmark
3. Odense M
4. Denmark
5. Veolia Environment Research & Innovation (VERI)
6. Chemin de la Digue
7. 78600 Maisons-Laffitte
8. France
Abstract
Ozonation of NOM/HS in reject water results in higher purity of the recovered products during CaP crystallization.
Funder
Innovationsfonden
Publisher
Royal Society of Chemistry (RSC)
Subject
Water Science and Technology,Environmental Engineering
Link
http://pubs.rsc.org/en/content/articlepdf/2020/EW/C9EW00994A
Reference27 articles.
1. United Nations , The 2030 Agenda for Sustainable Development, A/RES/70/1 , 2015
2. World Water Development Report (WWDR), 2017
3. Peak Phosphorus: Clarifying the Key Issues of a Vigorous Debate about Long-Term Phosphorus Security
4. Sustainability Challenges of Phosphorus and Food: Solutions from Closing the Human Phosphorus Cycle
5. Phosphorus recovery from municipal wastewater: An integrated comparative technological, environmental and economic assessment of P recovery technologies
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