Selected Heavy Metals Removal From Electroplating Wastewater by Purified and Polyhydroxylbutyrate Functionalized Carbon Nanotubes Adsorbents

Удаление отдельных тяжелых металлов из сточных вод гальванического производства с использованием адсорбентов на основе очищенных и функционализированных полигидроксибутиратом углеродных нанотрубок
M.T. Bankole, Ambali Saka Abdulkareem, I.A. Mohammed, Stephen Shaibu Ochigbo, Jimoh Oladejo Tijani, Oladiran Kamaldeen Abubakre, W. Roos
2019-03-14

Temkin isothermbatch adsorptionelectroplating wastewaterheavy metal removalpolyhydroxylbutyrate-functionalized carbon nanotubes
This research investigated the removal of heavy metals (As, Pb, Cr, Cd, Ni, Cu, Fe, and Zn) via batch adsorption process from industrial electroplating wastewater using two different nano-adsorbents; purified carbon nanotubes (P-CNTs) and polyhydroxylbutyrate functionalized carbon nanotubes (PHB-CNTs), both produced through catalytic chemical vapour deposition (CCVD) method. HRSEM, HRTEM, XRD, DLS, BET, FTIR, XPS, TGA, pH drift and Raman spectroscopy were used to characterize the developed nano-adsorbents. In the batch adsorption process, the effects of contact time, dosage, temperature and pH were studied. Both nano-adsorbents gave optimum contact time, equilibrium time, optimum dosage, and pH of 10 minutes, 70 minutes, 20 mg, and 5.63-5.65 respectively. The heavy metals removal efficiencies by the nano-adsorbents followed the order of PHB-CNTs > P-CNTs based on ion exchange and electrostatic forces mechanism. For P-CNTs and PHB-CNTs, the equilibrium sorption isotherm suits temkin model, kinetic data fitted to pseudo-second order based on the linear regression correlation coefficient, and the thermodynamic study established spontaneity and endothermic nature of the adsorption process. The findings in this research conclude that both nano-adsorbents have exceptional capacity to remove heavy metals from the adsorbate, with PHB-CNTs possessing better quality. The treated adsorbate meets the standard for industrial or irrigation re-use.
1
Adsorption equilibrium followed the Temkin isotherm, kinetics followed a pseudo-second-order model, and thermodynamics indicated spontaneous, endothermic adsorption.
2
Both adsorbents achieved optimal operation at 10-minute contact time, 70-minute equilibrium time, 20 mg dosage, and pH 5.63–5.65.
3
Both nano-adsorbents showed high heavy-metal removal capacity, and the treated wastewater met standards for industrial or irrigation reuse.
4
Polyhydroxylbutyrate-functionalized carbon nanotubes removed heavy metals more efficiently than purified carbon nanotubes, driven by ion exchange and electrostatic interactions.
5
Purified and polyhydroxylbutyrate-functionalized carbon nanotubes were produced by catalytic chemical vapor deposition for removing eight heavy metals from electroplating wastewater.

Industrial electroplating wastewater containing heavy metals (As, Pb, Cr, Cd, Ni, Cu, Fe, and Zn)

The adsorption removal efficiency, equilibrium, kinetics, and thermodynamics of heavy metals using purified and polyhydroxylbutyrate-functionalized carbon nanotubes under varying contact time, dosage, temperature, and pH

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2019-03-14
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M.T. Bankole
Ambali Saka Abdulkareem
I.A. Mohammed
Stephen Shaibu Ochigbo
Jimoh Oladejo Tijani
Oladiran Kamaldeen Abubakre
W. Roos
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