Heavy Metals Removal from Electroplating Wastewater by Waste Fiber-Based Poly(amidoxime) Ligand
Удаление тяжёлых металлов из сточных вод гальванического производства с использованием лиганда на основе поли(амидоксима), полученного из отходов волокнистых материалов
2021-04-30
SCID: 54.1/2y8xv7j2
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Langmuir isothermelectroplating wastewaterheavy metal removalpoly(amidoxime) ligandwaste fiber cellulose
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Abstract (AI)
An efficient and economical treatment technology for heavy metal removal from the electroplating wastewaters is needed for the water purification. Therefore, pure cellulosic materials were derived from two waste fiber (pandanus fruit and durian rind) and conversion of the cellulose into the poly(acrylonitrile)-grafted material was accomplished by free radical grafting system. Thereafter, poly(amidoxime) ligand was produced from the grafted materials. Sorption capacity (qe) of several toxic metals ions was found to be high, e.g., copper capacity (qe) was 298.4 mg g−1 at pH 6. In fact, other metal ions, such as cobalt chromium and nickel also demonstrated significant sorption capacity at pH 6. Sorption mechanism played acceptable meet with pseudo second-order rate of kinetic pattern due to the satisfactory correlation with the experimental sorption values. A significant correlation coefficient (R2 > 0.99) with Langmuir model isotherm showed the single or monolayer sorption occurred on the surfaces. The reusability study showed that the polymer ligand can be useful up to six cycles with minimum loss (7%) of efficiency and can be used in the extraction of toxic metal ions present in the wastewaters. Therefore, two types of electroplating wastewater were used in this study, one containing high concentration of copper (23 ppm) and iron (32 ppm) with trace level of others heavy metals (IWS 1) and another containing high concentration of copper (85.7 ppm) only with trace level of others heavy metals (IWS 2). This polymeric ligand showed acceptable removal magnitude, up to 98% of toxic metal ions can be removed from electroplating wastewater.
Key Findings
1
Sorption followed pseudo-second-order kinetics, while Langmuir fitting with R2 > 0.99 indicated predominantly monolayer adsorption.
2
The ligand exhibited high metal sorption capacity, reaching 298.4 mg g−1 for copper at pH 6; cobalt, chromium, and nickel also showed significant uptake.
3
The material removed up to 98% of toxic metal ions from two electroplating wastewaters containing elevated copper and/or iron concentrations.
4
The polymer ligand remained effective for six reuse cycles, with only a 7% efficiency loss.
5
Waste pandanus fruit and durian rind fibers were converted into poly(acrylonitrile)-grafted cellulose and then poly(amidoxime) ligands for heavy-metal removal.
Research Object
Waste fiber-based poly(amidoxime) ligand applied to electroplating wastewater containing toxic heavy metal ions
Research Subject
Sorption capacity, removal efficiency, kinetics, monolayer isotherm behavior, and reusability of the ligand for removing heavy metal ions from electroplating wastewater
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2021-04-30
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