Radiation induced grafting of amphiphilic double poly(ionic liquid) copolymer onto silica surface for the removal of ReO4− as analogue of TcO4

Amphiphilic double poly(imidazole ionic liquid) grafted silica (SMIL-n) was prepared by radiation grafting of hydrophilic 1-vinyl-3-ethylimidazolium bromide and hydrophobic 1-vinyl-3-octylimidazolium bromide at different ratio onto silica. The adsorption behavior of SMIL-n was investigated. The adso...

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Published inJournal of radioanalytical and nuclear chemistry Vol. 332; no. 6; pp. 1869 - 1881
Main Authors Zhang, Na, Yang, Miao, Zhang, Manman, Du, Jifu, Bao, Qiburi, Zhao, Long, Dong, Zhen
Format Journal Article
LanguageEnglish
Published Cham Springer International Publishing 01.06.2023
Springer Nature B.V
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Abstract Amphiphilic double poly(imidazole ionic liquid) grafted silica (SMIL-n) was prepared by radiation grafting of hydrophilic 1-vinyl-3-ethylimidazolium bromide and hydrophobic 1-vinyl-3-octylimidazolium bromide at different ratio onto silica. The adsorption behavior of SMIL-n was investigated. The adsorption equilibrium could reach less than 45 min, and their adsorption capacity were 152–171 mg/g obtained from Langmuir model. The selectivity of SMIL-n to ReO 4 − increased with the increasing content of hydrophobic ionic liquid. SMIL-n displayed good reusability, excellent acid resistance and irradiation resistance. Particularly, SMIL-n showed promising for ReO 4 − uptake from simulated contaminated Beishan groundwater and radioactive wastewater.
AbstractList Amphiphilic double poly(imidazole ionic liquid) grafted silica (SMIL-n) was prepared by radiation grafting of hydrophilic 1-vinyl-3-ethylimidazolium bromide and hydrophobic 1-vinyl-3-octylimidazolium bromide at different ratio onto silica. The adsorption behavior of SMIL-n was investigated. The adsorption equilibrium could reach less than 45 min, and their adsorption capacity were 152–171 mg/g obtained from Langmuir model. The selectivity of SMIL-n to ReO4− increased with the increasing content of hydrophobic ionic liquid. SMIL-n displayed good reusability, excellent acid resistance and irradiation resistance. Particularly, SMIL-n showed promising for ReO4− uptake from simulated contaminated Beishan groundwater and radioactive wastewater.
Amphiphilic double poly(imidazole ionic liquid) grafted silica (SMIL-n) was prepared by radiation grafting of hydrophilic 1-vinyl-3-ethylimidazolium bromide and hydrophobic 1-vinyl-3-octylimidazolium bromide at different ratio onto silica. The adsorption behavior of SMIL-n was investigated. The adsorption equilibrium could reach less than 45 min, and their adsorption capacity were 152–171 mg/g obtained from Langmuir model. The selectivity of SMIL-n to ReO 4 − increased with the increasing content of hydrophobic ionic liquid. SMIL-n displayed good reusability, excellent acid resistance and irradiation resistance. Particularly, SMIL-n showed promising for ReO 4 − uptake from simulated contaminated Beishan groundwater and radioactive wastewater.
Author Zhang, Manman
Du, Jifu
Zhang, Na
Yang, Miao
Bao, Qiburi
Zhao, Long
Dong, Zhen
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Keywords Removal
Radiation grafting
TcO
Poly(ionic liquid)
ReO
Silica
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Snippet Amphiphilic double poly(imidazole ionic liquid) grafted silica (SMIL-n) was prepared by radiation grafting of hydrophilic 1-vinyl-3-ethylimidazolium bromide...
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SubjectTerms Acid resistance
Adsorption
Chemistry
Chemistry and Materials Science
Copolymers
Diagnostic Radiology
Graft copolymers
Groundwater
Hadrons
Heavy Ions
Hydrophobicity
Imidazole
Inorganic Chemistry
Ionic liquids
Nuclear Chemistry
Nuclear Physics
Physical Chemistry
Radiation effects
Silicon dioxide
Wastewater
Title Radiation induced grafting of amphiphilic double poly(ionic liquid) copolymer onto silica surface for the removal of ReO4− as analogue of TcO4
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