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Isotherm and kinetic study of ZnO/BiOBr/Bi<sub>2</sub>S<sub>3</sub>.

Isotherm and kinetic study of ZnO/BiOBr/Bi<sub>2</sub>S<sub>3</sub>.

<p>(a) Isotherm, and (b) kinetic fitting for adsorption of CFX.</p>

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Bibliographic Details
Main Author: Asal Rahpeyma (22766063) (author)
Other Authors: Alireza Tamimzadeh (22766066) (author), Mehrdad Farhadian (22766069) (author), Ali Reza Solaimany Nazar (22766072) (author), Shahram Tangestaninejad (1448275) (author)
Published: 2025
Subjects:
Microbiology
Cell Biology
Molecular Biology
Neuroscience
Biotechnology
Evolutionary Biology
Developmental Biology
Cancer
Plasma Physics
Infectious Diseases
Computational Biology
sup >+</ sup
screening experiments resulted
optimal operating conditions
enhancing charge separation
div >< p
band gap energy
70 &# 8201
32 &# 8201
maximum adsorption capacity
conducted using xrd
immobilized system play
immobilized ternary zno
cefixime using zno
investigated using
achieved using
cfx adsorption
vis drs
synthesized via
synergistic effect
solvothermal method
results indicated
removal efficiency
raman spectroscopy
photocatalytic removal
optimum composition
morphological studies
monolayer mechanism
mass ratio
major role
dual z
approximately 96
30 wt
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