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Published in: Journal of Nanoparticle Research 2/2017

01-02-2017 | Research Paper

Removal of methylene blue from its aqueous solution by froth flotation: hydrophobic silica nanoparticle as a collector

Authors: Nan Hu, Wei Liu, Linlin Ding, Zhaoliang Wu, Hao Yin, Di Huang, Hongzhen Li, Lixue Jin, Huijie Zheng

Published in: Journal of Nanoparticle Research | Issue 2/2017

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Abstract

Dye pollution has been a severe problem faced by worldwide environmentalists. The use of nanoparticles as adsorbents has attracted widespread interests for effectively removing dyes, while the separation of them from an aqueous solution is a difficult and important subject. For achieving the simultaneous removal of methylene blue (MB) and nanoadsorbents, this work utilized a commercial hydrophobic silica nanoparticle (SNP) (200.0 ± 10.0 nm in average particle size) as a collector and then developed a novel froth flotation technology without using any surfactants. Under the suitable conditions of anhydrous ethanol dosage of 8 mL, pH of 9.0, SNP concentration of 600 mg/L, and flotation column height of 600 mm, the removal efficiencies of MB and SNPs and the volume ratio reached 91.1 ± 4.6%, 93.9 ± 4.7%, and 10.5 ± 0.5, respectively. Subsequently, the recovered MB-adsorbed SNPs in the foamate were separated by free setting due to their high concentration and massive agglomeration. After free setting, MB could be effectively separated from the recovered MB-adsorbed SNPs by using ethanol at pH 2.0 and repeating five cycles of washing-centrifugation. Additionally, the regenerated SNPs could be reused for removing MB up to five times. Overall, this work had a significant meaning for the treatment of dye-contaminated wastewaters.

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Metadata
Title
Removal of methylene blue from its aqueous solution by froth flotation: hydrophobic silica nanoparticle as a collector
Authors
Nan Hu
Wei Liu
Linlin Ding
Zhaoliang Wu
Hao Yin
Di Huang
Hongzhen Li
Lixue Jin
Huijie Zheng
Publication date
01-02-2017
Publisher
Springer Netherlands
Published in
Journal of Nanoparticle Research / Issue 2/2017
Print ISSN: 1388-0764
Electronic ISSN: 1572-896X
DOI
https://doi.org/10.1007/s11051-017-3762-5

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