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TITLE:
Application of ABS membranes in dynamic filtration for Chlorella sorokiniana dewatering - imarina:6389068

URV's Author/s:Haponska, Monika / Salvadó Rovira, Joan / Torras Font, Carles
Author, as appears in the article.:Haponska, M; Clavero, E; Salvado, J; Torras, C
Author's mail:carles.torras@urv.cat
joan.salvado@urv.cat
Author identifier:0000-0002-3112-3519
0000-0003-2238-6082
Journal publication year:2018
Publication Type:Journal Publications
ISSN:09619534
APA:Haponska, M; Clavero, E; Salvado, J; Torras, C (2018). Application of ABS membranes in dynamic filtration for Chlorella sorokiniana dewatering. Biomass & Bioenergy, 111(), 224-231. DOI: 10.1016/j.biombioe.2017.03.013
Paper original source:Biomass & Bioenergy. 111 224-231
Abstract:© 2017 Elsevier Ltd This work focuses on the use of dynamic membrane filtration with cheap membranes manufactured from acrylonitrile butadiene styrene polymer for dewatering of Chlorella sorokiniana microalgae strain. Dynamic filtration based on vibration was used at pilot scale and compared to conventional cross-flow filtration to demonstrate how fouling can be greatly minimized. Experiments were carried-out with different types of commercial membranes from different pore sizes and materials such as polyethersulfone or polyacrylonitrile. ABS membranes were produced, characterized (scanning electron microscopy, contact angle and porosity measurements) and tested with conventional and dynamic filtration. Composition of acrylonitrile butadiene styrene polymeric solution as well as conditions of membrane preparation were examined in order to obtain a useable membrane for microalgae filtration. Acrylonitrile butadiene styrene membranes offered promising results in terms of permeability when applied to both filtration techniques for Chlorella sorokiniana dewatering. The influence of different concentrations of microalgae culture as a feed for dynamic membrane filtration was examined. To confirm total microalgae rejection the optical density of feed, permeate and retentate was studied in all experiments. Acrylonitrile butadiene styrene material is order of magnitudes cheaper than conventional membrane materials. Combined with dynamic filtration, both may turn membrane filtration into a preferred technology for microalgae dewatering.
Article's DOI:10.1016/j.biombioe.2017.03.013
Link to the original source:https://www.sciencedirect.com/science/article/abs/pii/S0961953417301071?via%3Dihub
Paper version:info:eu-repo/semantics/acceptedVersion
licence for use:https://creativecommons.org/licenses/by/3.0/es/
Department:Enginyeria Química
Licence document URL:https://repositori.urv.cat/ca/proteccio-de-dades/
Thematic Areas:Zootecnia / recursos pesqueiros
Waste management and disposal
Renewable energy, sustainability and the environment
Química
Materiais
Interdisciplinar
Forestry
Farmacia
Environmental sciences
Engenharias iv
Engenharias iii
Engenharias ii
Engenharias i
Energy & fuels
Economia
Ciências biológicas iii
Ciências biológicas ii
Ciências biológicas i
Ciências ambientais
Ciências agrárias i
Ciência de alimentos
Biotecnología
Biotechnology & applied microbiology
Biodiversidade
Astronomia / física
Arquitetura e urbanismo
Agronomy and crop science
Agriculture
Agricultural engineering
Administração, ciências contábeis e turismo
Administração pública e de empresas, ciências contábeis e turismo
Keywords:Technology
Strategies
Separation
Microalgae
Membrane
Extraction
Economics
Dynamic filtration
Dewatering
Biomass
Biofuels
Biodiesel production
Acrylonitrole butadiene styrene
Acrylonitrile butadiene styrene
Acrylonitrile
Entity:Universitat Rovira i Virgili
Record's date:2025-03-08
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