Projects per year
Abstract
Surface modifications of cellulose nanomaterials can be used to tailor their surface charge and hydrophilicity-hydrophobicity characteristics. Additionally, it can facilitate the selective interaction of nanocelluloses with other solid particles to further expand their applicability in different fields. For instance, cellulose nanocrystals (CNC) with amphiphilic features are potential green alternatives in mineral processing such as particle flotation. In the present study, aqueous, one- and two-step silylation of CNCs with amino and alkyl silanes was considered to create a novel bifunctionalized CNCs that contained both positively charged amino silane moieties and hydrophobic alkyl chains. Especially, the effects of reaction conditions and different reaction routes on the silylation were investigated, and the electric surface potential and hydrophobicity of CNCs were determined. The bifunctionalization conducted by the simultaneous addition of an amino silane and alkyl silane led to a high reaction efficiency, and the grafting amount was notably higher than that obtained with the sequential reactions with individual reagents. After the functionalization, the hydrophobicity of the CNCs was strongly altered, leading to water contact angles of up to 135° on CNC films. However, the silylation with amino silanes slightly affected the ζ-potential of the functionalized CNCs. Due to the relatively low ζ-potential, the interaction and orthokinetic attachment of CNCs onto quartz surfaces were insufficient, resulting in a limited flotation recovery in microflotation using a Hallimond tube.
Original language | English |
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Pages (from-to) | 775-787 |
Number of pages | 13 |
Journal | Cellulose |
Volume | 30 |
Issue number | 2 |
Early online date | 27 Nov 2022 |
DOIs | |
Publication status | Published - Jan 2023 |
MoE publication type | A1 Journal article-refereed |
Keywords
- Cellulose nanoparticles
- Deep eutectic solvent
- Nanocellulose
- Quartz microflotation
- Silane
- Wettability
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Dive into the research topics of 'Aqueous bifunctionalization of cellulose nanocrystals through amino and alkyl silylation: functionalization, characterization, and performance of nanocrystals in quartz microflotation'. Together they form a unique fingerprint.Projects
- 1 Finished
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Interfacial modification of mineral surfaces using bio-colloids derived from sustainable resources with respect to froth flotation
Hartmann, R. (Principal investigator)
01/09/2019 → 30/06/2022
Project: Academy of Finland: Other research funding
Equipment
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Raw Materials Research Infrastructure
Karppinen, M. (Manager)
School of Chemical EngineeringFacility/equipment: Facility