Cargando…

Novel electroblowing synthesis of submicron zirconium dioxide fibers: effect of fiber structure on antimony(v) adsorption

Both stable and radioactive antimony are common industrial pollutants. For antimonate (Sb(v)) removal from industrial waste water, we synthesized submicron zirconium dioxide (ZrO(2)) fibers by electroblowing and calcination of the as-electroblown fibers. The fibers are amorphous after calcination at...

Descripción completa

Detalles Bibliográficos
Autores principales: Paajanen, Johanna, Lönnrot, Satu, Heikkilä, Mikko, Meinander, Kristoffer, Kemell, Marianna, Hatanpää, Timo, Ainassaari, Kaisu, Ritala, Mikko, Koivula, Risto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9418533/
https://www.ncbi.nlm.nih.gov/pubmed/36134400
http://dx.doi.org/10.1039/c9na00414a
_version_ 1784776967307919360
author Paajanen, Johanna
Lönnrot, Satu
Heikkilä, Mikko
Meinander, Kristoffer
Kemell, Marianna
Hatanpää, Timo
Ainassaari, Kaisu
Ritala, Mikko
Koivula, Risto
author_facet Paajanen, Johanna
Lönnrot, Satu
Heikkilä, Mikko
Meinander, Kristoffer
Kemell, Marianna
Hatanpää, Timo
Ainassaari, Kaisu
Ritala, Mikko
Koivula, Risto
author_sort Paajanen, Johanna
collection PubMed
description Both stable and radioactive antimony are common industrial pollutants. For antimonate (Sb(v)) removal from industrial waste water, we synthesized submicron zirconium dioxide (ZrO(2)) fibers by electroblowing and calcination of the as-electroblown fibers. The fibers are amorphous after calcination at 300 and 400 °C and their average diameter is 720 nm. The fibers calcined at 500 to 800 °C have an average diameter of 570 nm and their crystal structure transforms from tetragonal to monoclinic at the highest calcination temperatures. We investigated Sb(v) adsorption capacity of the synthesized ZrO(2) fibers as a function of pH, adsorption isotherm at pH 6 and adsorption kinetics at pH 7. The tetragonal ZrO(2) fibers calcined at 500 °C exhibited the best potential for Sb(v) remediation with Sb(v) uptake of 10 mg g(−1) at pH 2 and a maximum Sb(v) uptake of 8.6 mg g(−1) in the adsorption isotherm experiment. They also reached 30% of 7 days' Sb(v) uptake in only a minute. The adsorption kinetics followed the Elovich model.
format Online
Article
Text
id pubmed-9418533
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher RSC
record_format MEDLINE/PubMed
spelling pubmed-94185332022-09-20 Novel electroblowing synthesis of submicron zirconium dioxide fibers: effect of fiber structure on antimony(v) adsorption Paajanen, Johanna Lönnrot, Satu Heikkilä, Mikko Meinander, Kristoffer Kemell, Marianna Hatanpää, Timo Ainassaari, Kaisu Ritala, Mikko Koivula, Risto Nanoscale Adv Chemistry Both stable and radioactive antimony are common industrial pollutants. For antimonate (Sb(v)) removal from industrial waste water, we synthesized submicron zirconium dioxide (ZrO(2)) fibers by electroblowing and calcination of the as-electroblown fibers. The fibers are amorphous after calcination at 300 and 400 °C and their average diameter is 720 nm. The fibers calcined at 500 to 800 °C have an average diameter of 570 nm and their crystal structure transforms from tetragonal to monoclinic at the highest calcination temperatures. We investigated Sb(v) adsorption capacity of the synthesized ZrO(2) fibers as a function of pH, adsorption isotherm at pH 6 and adsorption kinetics at pH 7. The tetragonal ZrO(2) fibers calcined at 500 °C exhibited the best potential for Sb(v) remediation with Sb(v) uptake of 10 mg g(−1) at pH 2 and a maximum Sb(v) uptake of 8.6 mg g(−1) in the adsorption isotherm experiment. They also reached 30% of 7 days' Sb(v) uptake in only a minute. The adsorption kinetics followed the Elovich model. RSC 2019-10-08 /pmc/articles/PMC9418533/ /pubmed/36134400 http://dx.doi.org/10.1039/c9na00414a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Paajanen, Johanna
Lönnrot, Satu
Heikkilä, Mikko
Meinander, Kristoffer
Kemell, Marianna
Hatanpää, Timo
Ainassaari, Kaisu
Ritala, Mikko
Koivula, Risto
Novel electroblowing synthesis of submicron zirconium dioxide fibers: effect of fiber structure on antimony(v) adsorption
title Novel electroblowing synthesis of submicron zirconium dioxide fibers: effect of fiber structure on antimony(v) adsorption
title_full Novel electroblowing synthesis of submicron zirconium dioxide fibers: effect of fiber structure on antimony(v) adsorption
title_fullStr Novel electroblowing synthesis of submicron zirconium dioxide fibers: effect of fiber structure on antimony(v) adsorption
title_full_unstemmed Novel electroblowing synthesis of submicron zirconium dioxide fibers: effect of fiber structure on antimony(v) adsorption
title_short Novel electroblowing synthesis of submicron zirconium dioxide fibers: effect of fiber structure on antimony(v) adsorption
title_sort novel electroblowing synthesis of submicron zirconium dioxide fibers: effect of fiber structure on antimony(v) adsorption
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9418533/
https://www.ncbi.nlm.nih.gov/pubmed/36134400
http://dx.doi.org/10.1039/c9na00414a
work_keys_str_mv AT paajanenjohanna novelelectroblowingsynthesisofsubmicronzirconiumdioxidefiberseffectoffiberstructureonantimonyvadsorption
AT lonnrotsatu novelelectroblowingsynthesisofsubmicronzirconiumdioxidefiberseffectoffiberstructureonantimonyvadsorption
AT heikkilamikko novelelectroblowingsynthesisofsubmicronzirconiumdioxidefiberseffectoffiberstructureonantimonyvadsorption
AT meinanderkristoffer novelelectroblowingsynthesisofsubmicronzirconiumdioxidefiberseffectoffiberstructureonantimonyvadsorption
AT kemellmarianna novelelectroblowingsynthesisofsubmicronzirconiumdioxidefiberseffectoffiberstructureonantimonyvadsorption
AT hatanpaatimo novelelectroblowingsynthesisofsubmicronzirconiumdioxidefiberseffectoffiberstructureonantimonyvadsorption
AT ainassaarikaisu novelelectroblowingsynthesisofsubmicronzirconiumdioxidefiberseffectoffiberstructureonantimonyvadsorption
AT ritalamikko novelelectroblowingsynthesisofsubmicronzirconiumdioxidefiberseffectoffiberstructureonantimonyvadsorption
AT koivularisto novelelectroblowingsynthesisofsubmicronzirconiumdioxidefiberseffectoffiberstructureonantimonyvadsorption