№ files_lp_4_process_2_70207
Study evaluating hydrothermal carbonization of municipal organic waste for phosphorus concentration and extraction, including life cycle assessment of its environmental impact and potential valorization as fertilizer or solid fuel.
Year: 2023
Region / City: Valencia, Spain; Kgs. Lyngby, Denmark
Subject: Phosphorus recovery, hydrothermal carbonization, municipal solid waste
Document type: Research article
Institution: Ingelia, S.L.; Technical University of Denmark; Instituto de Tecnología Química (UPV-CSIC)
Authors: Borja Oliver-Tomas, Martin Hitzl, Mikołaj Owsianiak, Michael Renz
Target audience: Environmental scientists, waste management professionals
Methods: Hydrothermal carbonization, mineral acid extraction, life cycle assessment
Key findings: Nitric acid most efficient for phosphorus extraction; separate use of hydrochar and phosphorus increases environmental impact
Applications: Fertilizer production, solid fuel utilization
Keywords: Advanced hydrochar, low-ash solid fuel, phosphorus extraction, phosphorus fertilizer
Price: 8 / 10 USD
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