TY - JOUR
T1 - An effective natural mineral-catalyzed heterogeneous electro-Fenton method for degradation of an antineoplastic drug
T2 - Modeling by a neural network
AU - Hajiahmadi, Mahsa
AU - Zarei, Mahmoud
AU - Khataee, Alireza
N1 - Publisher Copyright:
© 2021 Elsevier Ltd
PY - 2022/3
Y1 - 2022/3
N2 - In this study, the heterogeneous electro-Fenton method was used to remove Paclitaxel as an antineoplastic medicine. The cathode based on three-dimensional graphene (3DG) was applied as a gas diffusion electrode. The potential of five eco-friendly and recyclable iron minerals derived from nature (Magnetite, Siderite, Hematite, Limonite, and Pyrite) was investigated. Among the applied iron minerals, Pyrite showed the best, and Magnetite and Siderite showed good catalytic activity at pH 3.0. The current intensity of 300 mA, pHi 7.0, Paclitaxel concentration of 3 mg L−1, amount of Pyrite 4.5 g L−1, and time of 120 min was the optimum condition of the process with the removal efficiency of 99.13% in the presence of Pyrite. Repeating the experiments eight times revealed the reusability of the prepared 3DG as a cathode. Also, using radical scavengers indicated the principal role of the hydroxyl radicals ([rad]OH) in the treatment process. Analysis of total organic carbon reached 77.64% mineralization of 3 mg L−1 Paclitaxel at 360 min. Finally, ten by-products of small molecules were identified by gas chromatography-mass spectrometry device.
AB - In this study, the heterogeneous electro-Fenton method was used to remove Paclitaxel as an antineoplastic medicine. The cathode based on three-dimensional graphene (3DG) was applied as a gas diffusion electrode. The potential of five eco-friendly and recyclable iron minerals derived from nature (Magnetite, Siderite, Hematite, Limonite, and Pyrite) was investigated. Among the applied iron minerals, Pyrite showed the best, and Magnetite and Siderite showed good catalytic activity at pH 3.0. The current intensity of 300 mA, pHi 7.0, Paclitaxel concentration of 3 mg L−1, amount of Pyrite 4.5 g L−1, and time of 120 min was the optimum condition of the process with the removal efficiency of 99.13% in the presence of Pyrite. Repeating the experiments eight times revealed the reusability of the prepared 3DG as a cathode. Also, using radical scavengers indicated the principal role of the hydroxyl radicals ([rad]OH) in the treatment process. Analysis of total organic carbon reached 77.64% mineralization of 3 mg L−1 Paclitaxel at 360 min. Finally, ten by-products of small molecules were identified by gas chromatography-mass spectrometry device.
KW - Advanced oxidation process
KW - Anticancer drug
KW - Artificial neural network
KW - Heterogeneous electro-fenton
KW - Iron mineral
KW - Paclitaxel
UR - http://www.scopus.com/inward/record.url?scp=85119061200&partnerID=8YFLogxK
U2 - 10.1016/j.chemosphere.2021.132810
DO - 10.1016/j.chemosphere.2021.132810
M3 - Article
C2 - 34767845
AN - SCOPUS:85119061200
SN - 0045-6535
VL - 291
JO - Chemosphere
JF - Chemosphere
M1 - 132810
ER -