Effective Adsorption and Removal of Doxorubicin from Aqueous Solutions Using Mesostructured Silica Nanospheres: Box-Behnken Design Optimization and Adsorption Performance Evaluation

被引:16
作者
Althumayri, Khalid [1 ]
Guesmi, Ahlem [2 ]
Abd El-Fattah, Wesam [2 ,3 ]
Khezami, Lotfi [2 ]
Soltani, Taoufik [4 ]
Ben Hamadi, Naoufel [2 ,5 ]
Shahat, Ahmed [6 ]
机构
[1] Taibah Univ, Coll Sci, Dept Chem, Al Madinah Al Munawarah 30002, Saudi Arabia
[2] IMSIU Imam Mohammad Ibn Saud Islamic Univ, Coll Sci, Chem Dept, Riyadh 11432, Saudi Arabia
[3] Port Said Univ, Fac Sci, Dept Chem, Port Said 43518, Egypt
[4] Univ Tunis El Manar, Fac Sci Tunis, Phys Lab Soft Matter & Electromagnet Modelling, Tunis 1068, Tunisia
[5] UM Univ Monastir, Fac Sci Monastir, Lab Heterocycl Chem, Nat Prod & React LR11ES39, Monastir 5019, Tunisia
[6] Suez Univ, Fac Sci, Dept Chem, Suez 8151650, Egypt
关键词
EFFICIENT SELENIUM(IV) DETECTION; TRACE PALLADIUM(II) DETECTION; TUNING MESOPOROUS ADSORBENT; OPTICAL COMPOSITE-MATERIAL; NANO-CONJUGATE ADSORBENT; LITHIUM ION BATTERIES; WASTE-WATER; COPPER(II) IONS; PHOSPHATE REMOVAL; FACILE SYNTHESIS;
D O I
10.1021/acsomega.3c00829
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The aim of this study is to evaluate the efficacy of mesoporous silica nanospheres as an adsorbent to remove doxorubicin (DOX) from aqueous solution. The surface and structural properties of mesoporous silica nanospheres were investigated using BET, SEM, XRD, TEM, zeta potential, and point of zero charge analysis. To optimize DOX removal from aqueous solution, a Box-Behnken surface statistical design (BBD) with four times factors, four levels, and response surface modeling (RSM) was used. A high amount of adsorptivity from DOX (804.84 mg/g) was successfully done under the following conditions: mesoporous silica nanospheres dose = 0.02 g/25 mL; pH = 6; shaking speed = 200 rpm; and adsorption time = 100 min. The study of isotherms demonstrated how well the Langmuir equation and the experimental data matched. According to thermodynamic characteristics, the adsorption of DOX on mesoporous silica nanospheres was endothermic and spontaneous. The increase in solution temperature also aided in the removal of DOX. The kinetic study showed that the model suited the pseudo-second-order. The suggested adsorption method could recycle mesoporous silica nanospheres five times, with a modest reduction in its ability for adsorption. The most important feature of our adsorbent is that it can be recycled five times without losing its efficiency.
引用
收藏
页码:14144 / 14159
页数:16
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