Cargando…

A Novel Ionic Exchange Membrane Crystallizer to Recover Magnesium Hydroxide from Seawater and Industrial Brines

A novel technology, the ion exchange membrane crystallizer (CrIEM), that combines reactive and membrane crystallization, was investigated in order to recover high purity magnesium hydroxide from multi-component artificial and natural solutions. In particular, in a CrIEM reactor, the presence of an a...

Descripción completa

Detalles Bibliográficos
Autores principales: La Corte, Daniele, Vassallo, Fabrizio, Cipollina, Andrea, Turek, Marian, Tamburini, Alessandro, Micale, Giorgio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7690859/
https://www.ncbi.nlm.nih.gov/pubmed/33114305
http://dx.doi.org/10.3390/membranes10110303
_version_ 1783614164745322496
author La Corte, Daniele
Vassallo, Fabrizio
Cipollina, Andrea
Turek, Marian
Tamburini, Alessandro
Micale, Giorgio
author_facet La Corte, Daniele
Vassallo, Fabrizio
Cipollina, Andrea
Turek, Marian
Tamburini, Alessandro
Micale, Giorgio
author_sort La Corte, Daniele
collection PubMed
description A novel technology, the ion exchange membrane crystallizer (CrIEM), that combines reactive and membrane crystallization, was investigated in order to recover high purity magnesium hydroxide from multi-component artificial and natural solutions. In particular, in a CrIEM reactor, the presence of an anion exchange membrane (AEM), which separates two-compartment containing a saline solution and an alkaline solution, allows the passage of hydroxyl ions from the alkaline to the saline solution compartment, where crystallization of magnesium hydroxide occurs, yet avoiding a direct mixing between the solutions feeding the reactor. This enables the use of low-cost reactants (e.g., Ca(OH)(2)) without the risk of co-precipitation of by-products and contamination of the final crystals. An experimental campaign was carried out treating two types of feed solution, namely: (1) a waste industrial brine from the Bolesław Śmiały coal mine in Łaziska Górne (Poland) and (2) Mediterranean seawater, collected from the North Sicilian coast (Italy). The CrIEM was tested in a feed and bleed modality in order to operate in a continuous mode. The Mg(2+) concentration in the feed solutions ranges from 0.7 to 3.2 g/L. Magnesium recovery efficiencies from 89 up to 100% were reached, while magnesium hydroxide purity between 94% and 98.8% was obtained.
format Online
Article
Text
id pubmed-7690859
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-76908592020-11-27 A Novel Ionic Exchange Membrane Crystallizer to Recover Magnesium Hydroxide from Seawater and Industrial Brines La Corte, Daniele Vassallo, Fabrizio Cipollina, Andrea Turek, Marian Tamburini, Alessandro Micale, Giorgio Membranes (Basel) Article A novel technology, the ion exchange membrane crystallizer (CrIEM), that combines reactive and membrane crystallization, was investigated in order to recover high purity magnesium hydroxide from multi-component artificial and natural solutions. In particular, in a CrIEM reactor, the presence of an anion exchange membrane (AEM), which separates two-compartment containing a saline solution and an alkaline solution, allows the passage of hydroxyl ions from the alkaline to the saline solution compartment, where crystallization of magnesium hydroxide occurs, yet avoiding a direct mixing between the solutions feeding the reactor. This enables the use of low-cost reactants (e.g., Ca(OH)(2)) without the risk of co-precipitation of by-products and contamination of the final crystals. An experimental campaign was carried out treating two types of feed solution, namely: (1) a waste industrial brine from the Bolesław Śmiały coal mine in Łaziska Górne (Poland) and (2) Mediterranean seawater, collected from the North Sicilian coast (Italy). The CrIEM was tested in a feed and bleed modality in order to operate in a continuous mode. The Mg(2+) concentration in the feed solutions ranges from 0.7 to 3.2 g/L. Magnesium recovery efficiencies from 89 up to 100% were reached, while magnesium hydroxide purity between 94% and 98.8% was obtained. MDPI 2020-10-24 /pmc/articles/PMC7690859/ /pubmed/33114305 http://dx.doi.org/10.3390/membranes10110303 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
La Corte, Daniele
Vassallo, Fabrizio
Cipollina, Andrea
Turek, Marian
Tamburini, Alessandro
Micale, Giorgio
A Novel Ionic Exchange Membrane Crystallizer to Recover Magnesium Hydroxide from Seawater and Industrial Brines
title A Novel Ionic Exchange Membrane Crystallizer to Recover Magnesium Hydroxide from Seawater and Industrial Brines
title_full A Novel Ionic Exchange Membrane Crystallizer to Recover Magnesium Hydroxide from Seawater and Industrial Brines
title_fullStr A Novel Ionic Exchange Membrane Crystallizer to Recover Magnesium Hydroxide from Seawater and Industrial Brines
title_full_unstemmed A Novel Ionic Exchange Membrane Crystallizer to Recover Magnesium Hydroxide from Seawater and Industrial Brines
title_short A Novel Ionic Exchange Membrane Crystallizer to Recover Magnesium Hydroxide from Seawater and Industrial Brines
title_sort novel ionic exchange membrane crystallizer to recover magnesium hydroxide from seawater and industrial brines
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7690859/
https://www.ncbi.nlm.nih.gov/pubmed/33114305
http://dx.doi.org/10.3390/membranes10110303
work_keys_str_mv AT lacortedaniele anovelionicexchangemembranecrystallizertorecovermagnesiumhydroxidefromseawaterandindustrialbrines
AT vassallofabrizio anovelionicexchangemembranecrystallizertorecovermagnesiumhydroxidefromseawaterandindustrialbrines
AT cipollinaandrea anovelionicexchangemembranecrystallizertorecovermagnesiumhydroxidefromseawaterandindustrialbrines
AT turekmarian anovelionicexchangemembranecrystallizertorecovermagnesiumhydroxidefromseawaterandindustrialbrines
AT tamburinialessandro anovelionicexchangemembranecrystallizertorecovermagnesiumhydroxidefromseawaterandindustrialbrines
AT micalegiorgio anovelionicexchangemembranecrystallizertorecovermagnesiumhydroxidefromseawaterandindustrialbrines
AT lacortedaniele novelionicexchangemembranecrystallizertorecovermagnesiumhydroxidefromseawaterandindustrialbrines
AT vassallofabrizio novelionicexchangemembranecrystallizertorecovermagnesiumhydroxidefromseawaterandindustrialbrines
AT cipollinaandrea novelionicexchangemembranecrystallizertorecovermagnesiumhydroxidefromseawaterandindustrialbrines
AT turekmarian novelionicexchangemembranecrystallizertorecovermagnesiumhydroxidefromseawaterandindustrialbrines
AT tamburinialessandro novelionicexchangemembranecrystallizertorecovermagnesiumhydroxidefromseawaterandindustrialbrines
AT micalegiorgio novelionicexchangemembranecrystallizertorecovermagnesiumhydroxidefromseawaterandindustrialbrines