Modification of Ceramic Membranes with Carbon Compounds for Pharmaceutical Substances Removal from Water in a Filtration—Adsorption System

The aim of this work is to develop a new type of carbon-ceramic membranes for the removal of pharmaceutical substances from water. The membranes were prepared by the chemical modification method using an organosilicon precursor—octadecyltrichlorosilane (ODTS). Graphene oxide, multi-walled carbon nan...

Full description

Bibliographic Details
Main Authors: Daniel Polak, Izabela Zielińska, Maciej Szwast, Igor Kogut, Artur Małolepszy
Format: Article
Language:English
Published: MDPI AG 2021-06-01
Series:Membranes
Subjects:
Online Access:https://www.mdpi.com/2077-0375/11/7/481
id doaj-84a964acc872427ba16a53684ff84b77
record_format Article
spelling doaj-84a964acc872427ba16a53684ff84b772021-07-23T13:53:19ZengMDPI AGMembranes2077-03752021-06-011148148110.3390/membranes11070481Modification of Ceramic Membranes with Carbon Compounds for Pharmaceutical Substances Removal from Water in a Filtration—Adsorption SystemDaniel Polak0Izabela Zielińska1Maciej Szwast2Igor Kogut3Artur Małolepszy4Faculty of Chemical and Process Engineering, Warsaw University of Technology, 00-645 Warsaw, PolandFaculty of Chemical and Process Engineering, Warsaw University of Technology, 00-645 Warsaw, PolandFaculty of Chemical and Process Engineering, Warsaw University of Technology, 00-645 Warsaw, PolandHohenstein Institut für Textilinovation gGmbH, 74357 Bönnigheim, GermanyFaculty of Chemical and Process Engineering, Warsaw University of Technology, 00-645 Warsaw, PolandThe aim of this work is to develop a new type of carbon-ceramic membranes for the removal of pharmaceutical substances from water. The membranes were prepared by the chemical modification method using an organosilicon precursor—octadecyltrichlorosilane (ODTS). Graphene oxide, multi-walled carbon nanotubes with carboxylic groups, and single-walled carbon nanotubes were used in the modification process. The filtration properties and adsorption properties of the developed membranes were tested. In order to characterize the membrane, the water permeability, the change of the permeate flux in time, and the adsorbed mass of the substance were determined. Additionally, the surface properties of the membranes were characterized by contact angle measurements and porosimetry. The antibiotic tetracycline was used in the adsorption tests. Based on the results, the improved adsorption properties of the modified membrane in relation to the unmodified membrane were noticed. Novel ceramic membranes modified with MWCNT are characterized by 45.4% removal of tetracycline and permeate flux of 520 L·h·m<sup>−2</sup>·bar<sup>−1</sup>. We demonstrated the ability of modified membranes to adsorb pharmaceuticals from water streams that are in contact with the membrane. Novel membranes retain their filtration properties. Therefore, such membranes can be used in an integrated filtration–adsorption process.https://www.mdpi.com/2077-0375/11/7/481membraneadsorptionfiltrationpharmaceuticalsPPCPs
collection DOAJ
language English
format Article
sources DOAJ
author Daniel Polak
Izabela Zielińska
Maciej Szwast
Igor Kogut
Artur Małolepszy
spellingShingle Daniel Polak
Izabela Zielińska
Maciej Szwast
Igor Kogut
Artur Małolepszy
Modification of Ceramic Membranes with Carbon Compounds for Pharmaceutical Substances Removal from Water in a Filtration—Adsorption System
Membranes
membrane
adsorption
filtration
pharmaceuticals
PPCPs
author_facet Daniel Polak
Izabela Zielińska
Maciej Szwast
Igor Kogut
Artur Małolepszy
author_sort Daniel Polak
title Modification of Ceramic Membranes with Carbon Compounds for Pharmaceutical Substances Removal from Water in a Filtration—Adsorption System
title_short Modification of Ceramic Membranes with Carbon Compounds for Pharmaceutical Substances Removal from Water in a Filtration—Adsorption System
title_full Modification of Ceramic Membranes with Carbon Compounds for Pharmaceutical Substances Removal from Water in a Filtration—Adsorption System
title_fullStr Modification of Ceramic Membranes with Carbon Compounds for Pharmaceutical Substances Removal from Water in a Filtration—Adsorption System
title_full_unstemmed Modification of Ceramic Membranes with Carbon Compounds for Pharmaceutical Substances Removal from Water in a Filtration—Adsorption System
title_sort modification of ceramic membranes with carbon compounds for pharmaceutical substances removal from water in a filtration—adsorption system
publisher MDPI AG
series Membranes
issn 2077-0375
publishDate 2021-06-01
description The aim of this work is to develop a new type of carbon-ceramic membranes for the removal of pharmaceutical substances from water. The membranes were prepared by the chemical modification method using an organosilicon precursor—octadecyltrichlorosilane (ODTS). Graphene oxide, multi-walled carbon nanotubes with carboxylic groups, and single-walled carbon nanotubes were used in the modification process. The filtration properties and adsorption properties of the developed membranes were tested. In order to characterize the membrane, the water permeability, the change of the permeate flux in time, and the adsorbed mass of the substance were determined. Additionally, the surface properties of the membranes were characterized by contact angle measurements and porosimetry. The antibiotic tetracycline was used in the adsorption tests. Based on the results, the improved adsorption properties of the modified membrane in relation to the unmodified membrane were noticed. Novel ceramic membranes modified with MWCNT are characterized by 45.4% removal of tetracycline and permeate flux of 520 L·h·m<sup>−2</sup>·bar<sup>−1</sup>. We demonstrated the ability of modified membranes to adsorb pharmaceuticals from water streams that are in contact with the membrane. Novel membranes retain their filtration properties. Therefore, such membranes can be used in an integrated filtration–adsorption process.
topic membrane
adsorption
filtration
pharmaceuticals
PPCPs
url https://www.mdpi.com/2077-0375/11/7/481
work_keys_str_mv AT danielpolak modificationofceramicmembraneswithcarboncompoundsforpharmaceuticalsubstancesremovalfromwaterinafiltrationadsorptionsystem
AT izabelazielinska modificationofceramicmembraneswithcarboncompoundsforpharmaceuticalsubstancesremovalfromwaterinafiltrationadsorptionsystem
AT maciejszwast modificationofceramicmembraneswithcarboncompoundsforpharmaceuticalsubstancesremovalfromwaterinafiltrationadsorptionsystem
AT igorkogut modificationofceramicmembraneswithcarboncompoundsforpharmaceuticalsubstancesremovalfromwaterinafiltrationadsorptionsystem
AT arturmałolepszy modificationofceramicmembraneswithcarboncompoundsforpharmaceuticalsubstancesremovalfromwaterinafiltrationadsorptionsystem
_version_ 1721287157426946048