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Circular economy in hot-dip galvanizing with zinc and iron recovery from spent pickling acids

The management of spent pickling acids (SPA) is an environmental challenge for the hot-dip galvanizing (HDG) industry. Bearing in mind its elevated content of iron and zinc, SPA can be regarded as a source of secondary materials in a circular economy approach. This work reports the pilot scale demon...

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Autores principales: Arguillarena, Andrea, Margallo, María, Arruti-Fernández, Axel, Pinedo, Javier, Gómez, Pedro, Ortiz, Inmaculada, Urtiaga, Ane
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9948803/
https://www.ncbi.nlm.nih.gov/pubmed/36845587
http://dx.doi.org/10.1039/d2ra08195d
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author Arguillarena, Andrea
Margallo, María
Arruti-Fernández, Axel
Pinedo, Javier
Gómez, Pedro
Ortiz, Inmaculada
Urtiaga, Ane
author_facet Arguillarena, Andrea
Margallo, María
Arruti-Fernández, Axel
Pinedo, Javier
Gómez, Pedro
Ortiz, Inmaculada
Urtiaga, Ane
author_sort Arguillarena, Andrea
collection PubMed
description The management of spent pickling acids (SPA) is an environmental challenge for the hot-dip galvanizing (HDG) industry. Bearing in mind its elevated content of iron and zinc, SPA can be regarded as a source of secondary materials in a circular economy approach. This work reports the pilot scale demonstration of non-dispersive solvent extraction (NDSX) in hollow fiber membrane contactors (HFMCs) to perform the selective zinc separation and SPA purification, so that the characteristics needed for use as a source of iron chloride are achieved. The operation of the NDSX pilot plant, which incorporates four HFMCs with a 80 m(2) nominal membrane area, is carried out with SPA supplied by an industrial galvanizer, and consequently technology readiness level (TRL) 7 is reached. The purification of the SPA requires of a novel feed and purge strategy to operate the pilot plant in continuous mode. To facilitate the further implementation of the process, the extraction system is formed by tributyl phosphate as the organic extractant and tap water as the stripping agent, both easily available and cost-effective chemicals. The resulting iron chloride solution is successfully valorized as a hydrogen sulfide suppressor to purify the biogas generated in the anaerobic sludge treatment of a wastewater treatment plant. Additionally, we validate the NDSX mathematical model using pilot scale experimental data, providing a design tool for process scale-up and industrial implementation.
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spelling pubmed-99488032023-02-24 Circular economy in hot-dip galvanizing with zinc and iron recovery from spent pickling acids Arguillarena, Andrea Margallo, María Arruti-Fernández, Axel Pinedo, Javier Gómez, Pedro Ortiz, Inmaculada Urtiaga, Ane RSC Adv Chemistry The management of spent pickling acids (SPA) is an environmental challenge for the hot-dip galvanizing (HDG) industry. Bearing in mind its elevated content of iron and zinc, SPA can be regarded as a source of secondary materials in a circular economy approach. This work reports the pilot scale demonstration of non-dispersive solvent extraction (NDSX) in hollow fiber membrane contactors (HFMCs) to perform the selective zinc separation and SPA purification, so that the characteristics needed for use as a source of iron chloride are achieved. The operation of the NDSX pilot plant, which incorporates four HFMCs with a 80 m(2) nominal membrane area, is carried out with SPA supplied by an industrial galvanizer, and consequently technology readiness level (TRL) 7 is reached. The purification of the SPA requires of a novel feed and purge strategy to operate the pilot plant in continuous mode. To facilitate the further implementation of the process, the extraction system is formed by tributyl phosphate as the organic extractant and tap water as the stripping agent, both easily available and cost-effective chemicals. The resulting iron chloride solution is successfully valorized as a hydrogen sulfide suppressor to purify the biogas generated in the anaerobic sludge treatment of a wastewater treatment plant. Additionally, we validate the NDSX mathematical model using pilot scale experimental data, providing a design tool for process scale-up and industrial implementation. The Royal Society of Chemistry 2023-02-23 /pmc/articles/PMC9948803/ /pubmed/36845587 http://dx.doi.org/10.1039/d2ra08195d Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Arguillarena, Andrea
Margallo, María
Arruti-Fernández, Axel
Pinedo, Javier
Gómez, Pedro
Ortiz, Inmaculada
Urtiaga, Ane
Circular economy in hot-dip galvanizing with zinc and iron recovery from spent pickling acids
title Circular economy in hot-dip galvanizing with zinc and iron recovery from spent pickling acids
title_full Circular economy in hot-dip galvanizing with zinc and iron recovery from spent pickling acids
title_fullStr Circular economy in hot-dip galvanizing with zinc and iron recovery from spent pickling acids
title_full_unstemmed Circular economy in hot-dip galvanizing with zinc and iron recovery from spent pickling acids
title_short Circular economy in hot-dip galvanizing with zinc and iron recovery from spent pickling acids
title_sort circular economy in hot-dip galvanizing with zinc and iron recovery from spent pickling acids
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9948803/
https://www.ncbi.nlm.nih.gov/pubmed/36845587
http://dx.doi.org/10.1039/d2ra08195d
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