TY - JOUR
T1 - Adsorption of perfluorosulfonic acids (PFSAs) on an ultrafine potato peel waste grafted β-cyclodextrin (UFPPW-β-CD)
AU - Bruckmann, Franciele da Silva
AU - Jemli, Sonia
AU - Ben Amara, Fakhreddine
AU - Adelodun, Bashir
AU - Silva, Luis Felipe Oliveira
AU - Bejar, Samir
AU - Khan, Mohammad Rizwan
AU - Ahmad, Naushad
AU - dos Reis, Glaydson Simoes
AU - Dotto, Guilherme Luiz
PY - 2024
Y1 - 2024
N2 - Per- and polyfluoroalkyl substances are widely used in various consumer products. However, these compounds can cause various harm to the environment and health. Considering the high chemical stability, these compounds are not completely removed from the aqueous environment, and consequently, recent studies have detected their presence in water bodies. In this scenario, biomass-based adsorbents are promising. beta-cyclodextrin (beta-CD) was grafted in an ultrafine potato peel waste (UFPPW) to produce a novel, efficient, and sustainable adsorbent (UFPPW-beta-CD) that was used to remove three different perfluorosulfonic acids (PFSAs) from water. The efficient grafting was proved by several characterization techniques, which also demonstrated the main UFPPW-beta-CD features. The UFPPW-beta-CD was efficient for all PFSAs (perfluorohexanesulfonic acid (PFHxS), perfluoropentanesulfonic acid (PFPeS), and perfluorobutanesulfonic acid (PFBS)), with removal percentage higher than 74 %. The increase in the C-F chain of PFSAs favored the adsorption due to the host-guest hydrophobic interactions between the C-F chains of the adsorbates and the hydrophobic cavity of the beta-CD. Removal percentages and adsorption capacities at pH 3.0 were 74.6 % (49.92 mu g g-1) to the PFBS, 82.6 % (65.66 mu g g-1) to the PFPeS, and 90 % (100.89 mu g g-1) to the PFHxS. The kinetic followed the General order model, while the equilibrium agreed with the Sips isotherm. The adsorption capacity increased with the increase in the C-F chain of the adsorbate, but the adsorption rate followed the opposite trend. PFSAs adsorption on the UFPPW-beta-CD adsorbent was favorable and exothermic. UFPPW-beta-CD could be used seven times, keeping its maximum adsorption capacity constant using ultrasound-assisted desorption. It can be concluded that UFPPW-beta-CD is a sustainable adsorbent to uptake PFSAs from water, and this process is dependent on the size of the C-F chains.
AB - Per- and polyfluoroalkyl substances are widely used in various consumer products. However, these compounds can cause various harm to the environment and health. Considering the high chemical stability, these compounds are not completely removed from the aqueous environment, and consequently, recent studies have detected their presence in water bodies. In this scenario, biomass-based adsorbents are promising. beta-cyclodextrin (beta-CD) was grafted in an ultrafine potato peel waste (UFPPW) to produce a novel, efficient, and sustainable adsorbent (UFPPW-beta-CD) that was used to remove three different perfluorosulfonic acids (PFSAs) from water. The efficient grafting was proved by several characterization techniques, which also demonstrated the main UFPPW-beta-CD features. The UFPPW-beta-CD was efficient for all PFSAs (perfluorohexanesulfonic acid (PFHxS), perfluoropentanesulfonic acid (PFPeS), and perfluorobutanesulfonic acid (PFBS)), with removal percentage higher than 74 %. The increase in the C-F chain of PFSAs favored the adsorption due to the host-guest hydrophobic interactions between the C-F chains of the adsorbates and the hydrophobic cavity of the beta-CD. Removal percentages and adsorption capacities at pH 3.0 were 74.6 % (49.92 mu g g-1) to the PFBS, 82.6 % (65.66 mu g g-1) to the PFPeS, and 90 % (100.89 mu g g-1) to the PFHxS. The kinetic followed the General order model, while the equilibrium agreed with the Sips isotherm. The adsorption capacity increased with the increase in the C-F chain of the adsorbate, but the adsorption rate followed the opposite trend. PFSAs adsorption on the UFPPW-beta-CD adsorbent was favorable and exothermic. UFPPW-beta-CD could be used seven times, keeping its maximum adsorption capacity constant using ultrasound-assisted desorption. It can be concluded that UFPPW-beta-CD is a sustainable adsorbent to uptake PFSAs from water, and this process is dependent on the size of the C-F chains.
KW - Adsorption
KW - Emerging contaminants
KW - beta-cyclodextrin
KW - Recalcitrant compounds
KW - Adsorption
KW - Emerging contaminants
KW - beta-cyclodextrin
KW - Recalcitrant compounds
UR - https://res.slu.se/id/publ/130045
U2 - 10.1016/j.seppur.2024.127972
DO - 10.1016/j.seppur.2024.127972
M3 - Journal article
SN - 1383-5866
VL - 350
JO - Separation and Purification Technology
JF - Separation and Purification Technology
M1 - 127972
ER -