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Lignin-based hydrogels with “super-swelling” capacities for dye removal
Juan Domínguez-Robles
*
, María Soledad Peresin
, Tarja Tamminen
, Alejandro Rodríguez
, Eneko Larrañeta
, Anna Stiina Jääskeläinen
*
Corresponding author for this work
Universidad de Cordoba
Auburn University
Queen's University Belfast
Research output
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Contribution to journal
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Article
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Scientific
›
peer-review
135
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Keyphrases
Super-swelling
100%
Dye Removal
100%
Swelling Capacity
100%
Lignin-based Hydrogel
100%
Methylene Blue
66%
Lignin
33%
Adsorption
33%
Lignocellulosic Biomass
33%
Removal Efficiency
33%
Storage Modulus
33%
Mechanical Performance
33%
Wastewater
33%
Technical Lignin
33%
Water Uptake
33%
Forest Industry
33%
Sodium Hydroxide
33%
Water Absorption
33%
Renewable Materials
33%
Natural Polymers
33%
Organic Removal
33%
Loss Modulus
33%
Poly(styrene-co-maleic anhydride)
33%
Negative Surface Charge
33%
Methylene Blue Degradation
33%
Biorenewables
33%
Organic Dyes
33%
Ammonium Hydroxide
33%
Adsorbent
33%
High Swelling
33%
INIS
removal
100%
lignin
100%
capacity
100%
dyes
100%
hydrogels
100%
swelling
100%
water
50%
methylene blue
50%
values
16%
solutions
16%
performance
16%
efficiency
16%
surfaces
16%
polymers
16%
storage
16%
biomass
16%
industry
16%
cross-linking
16%
losses
16%
charges
16%
range
16%
uptake
16%
forests
16%
adsorption
16%
waste water
16%
absorption
16%
ethers
16%
by-products
16%
adsorbents
16%
sodium hydroxides
16%
ammonium hydroxides
16%
maleic acid
16%
Engineering
Swelling Capacity
100%
Hydrogel
100%
Renewables
16%
Lignocellulosic Biomass
16%
Removal Efficiency
16%
Mechanical Performance
16%
Main Constituent
16%
Absorption Capacity
16%
Loss Modulus
16%
Storage Modulus
16%
Material Science
Hydrogel
100%
Lignin
100%
Surface Charge
16%
Natural Polymer
16%
Sodium
16%
Adsorbent
16%
Organic Dye
16%
Chemical Engineering
Hydrogel
100%
Natural Polymer
16%