High-performance magnetic chicken bone-based biochar for efficient removal of rhodamine-B dye and tetracycline: competitive sorption analysis

AA Oladipo, AO Ifebajo, N Nisar… - Water Science and …, 2017 - iwaponline.com
Water Science and Technology, 2017iwaponline.com
Magnetic chicken bone-based biochar (MCBB) was successfully prepared and efficiently
adsorbed rhodamine-B (RB) dye and tetracycline (TC) in multi-component systems. The
magnetisation value, surface area, and pHpzc of the MCBB were found to be 66.5 emu/g,
328 m2/g, and 8.3, respectively. RB has higher saturation capacity (96.5 mg/g) and occupies
more active sites on MCBB, thus limiting the sorption of TC with lower saturation capacity
(63.3 mg/g). Langmuir isotherm suitably describes the sorption process in a single …
Magnetic chicken bone-based biochar (MCBB) was successfully prepared and efficiently adsorbed rhodamine-B (RB) dye and tetracycline (TC) in multi-component systems. The magnetisation value, surface area, and pHpzc of the MCBB were found to be 66.5 emu/g, 328 m2/g, and 8.3, respectively. RB has higher saturation capacity (96.5 mg/g) and occupies more active sites on MCBB, thus limiting the sorption of TC with lower saturation capacity (63.3 mg/g). Langmuir isotherm suitably describes the sorption process in a single-component system; however, the multi-component system was well fitted to the Sheindorf–Rebhun–Sheintuch model. The selectivity factor values confirmed that MCBB had higher adsorption affinity toward RB than TC. The intraparticle diffusion model played a significant role in the sorption process. The MCBB can be easily desorbed with base-spiked H2O and reused without loss in stability or structural integrity.
IWA Publishing
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