TY - JOUR
T1 - Adsorption of yttrium (Y3+) and concentration of rare earth elements from phosphogypsum using chitin and chitin aerogel*
AU - dos Reis, Glaydson S.
AU - Pinto, Diana
AU - Luetke, Sabrina F.
AU - Lima, Eder C.
AU - Silva, Luis F. O.
AU - De Brum, Irineu A. S.
AU - Dotto, Guilherme L.
PY - 2024
Y1 - 2024
N2 - Chitin powder and chitin-aerogel were prepared from shrimp wastes and used to uptake Y3+ from aqueous solutions and concentrate this rare earth element from phosphogypsum (PG). Chitin aerogel displays a specific surface area of 945 m2/g, while chitin powder is 3.6 m2/g, which largely influences its adsorption ability. Regarding the adsorption in synthetic solutions, the effect of pH on Y3+ removal is strong for chitin powder adsorbent. In contrast, no big pH influence was detected for chitin aerogel. Electrostatic interactions and chelation can highlight the proposed mechanism of Y3+ on chitin adsorbents for the powder and aerogel. Furthermore, in addition to these interactions, pore filling/pore diffusion is the main mechanism of Y3+ removal in the chitin aerogel. Chitin aerogel is efficient in concentrating 8 times the Y3+ from PG, a very complex matrix. The complex chitin aerogel-Y3+ can be a secondary source of rare earth elements for other applications . (c) 2023 Chinese Society of Rare Earths. Published by Elsevier B.V. All rights reserved.
AB - Chitin powder and chitin-aerogel were prepared from shrimp wastes and used to uptake Y3+ from aqueous solutions and concentrate this rare earth element from phosphogypsum (PG). Chitin aerogel displays a specific surface area of 945 m2/g, while chitin powder is 3.6 m2/g, which largely influences its adsorption ability. Regarding the adsorption in synthetic solutions, the effect of pH on Y3+ removal is strong for chitin powder adsorbent. In contrast, no big pH influence was detected for chitin aerogel. Electrostatic interactions and chelation can highlight the proposed mechanism of Y3+ on chitin adsorbents for the powder and aerogel. Furthermore, in addition to these interactions, pore filling/pore diffusion is the main mechanism of Y3+ removal in the chitin aerogel. Chitin aerogel is efficient in concentrating 8 times the Y3+ from PG, a very complex matrix. The complex chitin aerogel-Y3+ can be a secondary source of rare earth elements for other applications . (c) 2023 Chinese Society of Rare Earths. Published by Elsevier B.V. All rights reserved.
KW - Rare earths
KW - Sustainable material
KW - Chitin powder
KW - Chitin porous aerogel
KW - Yttrium adsorption and recovery
KW - Rare earths
KW - Sustainable material
KW - Chitin powder
KW - Chitin porous aerogel
KW - Yttrium adsorption and recovery
UR - https://res.slu.se/id/publ/122382
U2 - 10.1016/j.jre.2023.04.008
DO - 10.1016/j.jre.2023.04.008
M3 - Journal article
SN - 1002-0721
VL - 42
SP - 775
EP - 782
JO - Journal of Rare Earths
JF - Journal of Rare Earths
IS - 4
ER -