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Hydrogen Sulphide Sequestration with Metallic Ions in Acidic Media Based on Chitosan/sEPDM/Polypropylene Composites Hollow Fiber Membranes System

This paper presents the preparation and characterization of composite membranes based on chitosan (Chi), sulfonated ethylene–propylene–diene terpolymer (sEPDM), and polypropylene (PPy), and designed to capture hydrogen sulfide. The Chi/sEPDM/PPy composite membranes were prepared through controlled e...

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Detalles Bibliográficos
Autores principales: Pașcu, Dumitru, Nechifor, Aurelia Cristina, Grosu, Vlad-Alexandru, Oprea, Ovidiu Cristian, Tanczos, Szidonia-Katalin, Man, Geani Teodor, Dumitru, Florina, Grosu, Alexandra Raluca, Nechifor, Gheorghe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10057485/
https://www.ncbi.nlm.nih.gov/pubmed/36984736
http://dx.doi.org/10.3390/membranes13030350
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author Pașcu, Dumitru
Nechifor, Aurelia Cristina
Grosu, Vlad-Alexandru
Oprea, Ovidiu Cristian
Tanczos, Szidonia-Katalin
Man, Geani Teodor
Dumitru, Florina
Grosu, Alexandra Raluca
Nechifor, Gheorghe
author_facet Pașcu, Dumitru
Nechifor, Aurelia Cristina
Grosu, Vlad-Alexandru
Oprea, Ovidiu Cristian
Tanczos, Szidonia-Katalin
Man, Geani Teodor
Dumitru, Florina
Grosu, Alexandra Raluca
Nechifor, Gheorghe
author_sort Pașcu, Dumitru
collection PubMed
description This paper presents the preparation and characterization of composite membranes based on chitosan (Chi), sulfonated ethylene–propylene–diene terpolymer (sEPDM), and polypropylene (PPy), and designed to capture hydrogen sulfide. The Chi/sEPDM/PPy composite membranes were prepared through controlled evaporation of a toluene dispersion layer of Chi:sEPDM 1;1, w/w, deposited by immersion and under a slight vacuum (100 mmHg) on a PPy hollow fiber support. The composite membranes were characterized morphologically, structurally, and thermally, but also from the point of view of their performance in the process of hydrogen sulfide sequestration in an acidic media solution with metallic ion content (Cu(2+), Cd(2+), Pb(2+), and/or Zn(2+)). The operational parameters of the pertraction were the pH, pM, matrix gas flow rate, and composition. The results of pertraction from synthetic gases mixture (nitrogen, methane, carbon dioxide) indicated an efficient removal of hydrogen sulfide through the prepared composite membranes, as well as its immobilization as sulfides. The sequestration and the recuperative separation, as sulfides from an acid medium, of the hydrogen sulfide reached up to 96%, decreasing in the order: CuS > PbS > CdS > ZnS.
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spelling pubmed-100574852023-03-30 Hydrogen Sulphide Sequestration with Metallic Ions in Acidic Media Based on Chitosan/sEPDM/Polypropylene Composites Hollow Fiber Membranes System Pașcu, Dumitru Nechifor, Aurelia Cristina Grosu, Vlad-Alexandru Oprea, Ovidiu Cristian Tanczos, Szidonia-Katalin Man, Geani Teodor Dumitru, Florina Grosu, Alexandra Raluca Nechifor, Gheorghe Membranes (Basel) Article This paper presents the preparation and characterization of composite membranes based on chitosan (Chi), sulfonated ethylene–propylene–diene terpolymer (sEPDM), and polypropylene (PPy), and designed to capture hydrogen sulfide. The Chi/sEPDM/PPy composite membranes were prepared through controlled evaporation of a toluene dispersion layer of Chi:sEPDM 1;1, w/w, deposited by immersion and under a slight vacuum (100 mmHg) on a PPy hollow fiber support. The composite membranes were characterized morphologically, structurally, and thermally, but also from the point of view of their performance in the process of hydrogen sulfide sequestration in an acidic media solution with metallic ion content (Cu(2+), Cd(2+), Pb(2+), and/or Zn(2+)). The operational parameters of the pertraction were the pH, pM, matrix gas flow rate, and composition. The results of pertraction from synthetic gases mixture (nitrogen, methane, carbon dioxide) indicated an efficient removal of hydrogen sulfide through the prepared composite membranes, as well as its immobilization as sulfides. The sequestration and the recuperative separation, as sulfides from an acid medium, of the hydrogen sulfide reached up to 96%, decreasing in the order: CuS > PbS > CdS > ZnS. MDPI 2023-03-17 /pmc/articles/PMC10057485/ /pubmed/36984736 http://dx.doi.org/10.3390/membranes13030350 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Pașcu, Dumitru
Nechifor, Aurelia Cristina
Grosu, Vlad-Alexandru
Oprea, Ovidiu Cristian
Tanczos, Szidonia-Katalin
Man, Geani Teodor
Dumitru, Florina
Grosu, Alexandra Raluca
Nechifor, Gheorghe
Hydrogen Sulphide Sequestration with Metallic Ions in Acidic Media Based on Chitosan/sEPDM/Polypropylene Composites Hollow Fiber Membranes System
title Hydrogen Sulphide Sequestration with Metallic Ions in Acidic Media Based on Chitosan/sEPDM/Polypropylene Composites Hollow Fiber Membranes System
title_full Hydrogen Sulphide Sequestration with Metallic Ions in Acidic Media Based on Chitosan/sEPDM/Polypropylene Composites Hollow Fiber Membranes System
title_fullStr Hydrogen Sulphide Sequestration with Metallic Ions in Acidic Media Based on Chitosan/sEPDM/Polypropylene Composites Hollow Fiber Membranes System
title_full_unstemmed Hydrogen Sulphide Sequestration with Metallic Ions in Acidic Media Based on Chitosan/sEPDM/Polypropylene Composites Hollow Fiber Membranes System
title_short Hydrogen Sulphide Sequestration with Metallic Ions in Acidic Media Based on Chitosan/sEPDM/Polypropylene Composites Hollow Fiber Membranes System
title_sort hydrogen sulphide sequestration with metallic ions in acidic media based on chitosan/sepdm/polypropylene composites hollow fiber membranes system
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10057485/
https://www.ncbi.nlm.nih.gov/pubmed/36984736
http://dx.doi.org/10.3390/membranes13030350
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