Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Biosorption of Cu (II) and Pb (II) ions using acid modified Senna tora pods with a focus on isotherms and kinetics studies

View through CrossRef
The removal of heavy metals by biosorption method using agricultural waste and plant materials has become a powerful technology that is been explored for the treatment of domestic and industrial waste water due to its easy operating requirements and low cost. This work reports the application of Senna tora pods for the elimination of heavy metals (Cu and Pb ions) by biosorption in batch system. The effects of pH, contact time, dosage and initial concentration were evaluated. The kinetic and isotherms models for the Cu(II)/Pb(II) biosorption were tested basically by the pseudo-first-order and pseudo-second order kinetic models. Langmuir, Freundlich and Temkin isotherms models have also been used to fit equilibrium adsorption data. The monolayer sorption capacity (qL) of Cu(II) was found to be 0.791 mg/g while that of Pb(II) was 0.51 mg/g.The low Langmuir constant (KL) values suggests that the adsorption process was largely due to physisorption mechanism. The adsorption kinetics follow a pseudo-first-order model for Cu(II) and pseudo-second-order model for Pb(II), and the equilibrium data is suitably fitted by the Langmuir models than the Freundlich due to the high R2 values of 0.989 and 0.97 for Cu(II) and Pb(II) ions respectively. Consequently, there exists a closeness of the calculated sorption capacity (qcal) to the experimental sorption capacity (qex). In conclusion, the study generally showed that Senna tora pods is a potential and efficient adsorbent that could be explore for the bioremediation of heavy metal contaminated industrial wastewater.
Title: Biosorption of Cu (II) and Pb (II) ions using acid modified Senna tora pods with a focus on isotherms and kinetics studies
Description:
The removal of heavy metals by biosorption method using agricultural waste and plant materials has become a powerful technology that is been explored for the treatment of domestic and industrial waste water due to its easy operating requirements and low cost.
This work reports the application of Senna tora pods for the elimination of heavy metals (Cu and Pb ions) by biosorption in batch system.
The effects of pH, contact time, dosage and initial concentration were evaluated.
The kinetic and isotherms models for the Cu(II)/Pb(II) biosorption were tested basically by the pseudo-first-order and pseudo-second order kinetic models.
Langmuir, Freundlich and Temkin isotherms models have also been used to fit equilibrium adsorption data.
The monolayer sorption capacity (qL) of Cu(II) was found to be 0.
791 mg/g while that of Pb(II) was 0.
51 mg/g.
The low Langmuir constant (KL) values suggests that the adsorption process was largely due to physisorption mechanism.
The adsorption kinetics follow a pseudo-first-order model for Cu(II) and pseudo-second-order model for Pb(II), and the equilibrium data is suitably fitted by the Langmuir models than the Freundlich due to the high R2 values of 0.
989 and 0.
97 for Cu(II) and Pb(II) ions respectively.
Consequently, there exists a closeness of the calculated sorption capacity (qcal) to the experimental sorption capacity (qex).
In conclusion, the study generally showed that Senna tora pods is a potential and efficient adsorbent that could be explore for the bioremediation of heavy metal contaminated industrial wastewater.

Related Results

Biosorption of Fe (II) and Pb (II) on unmodified Senna tora: Isotherm and kinetic modeling
Biosorption of Fe (II) and Pb (II) on unmodified Senna tora: Isotherm and kinetic modeling
Contamination of environment by heavy metals has become a major concern worldwide. The role of conventional methods in remediating heavy metals has become ineffective and costly. T...
Biosorption of Cadmium and Lead by Dry Biomass of Nostoc sp. MK-11: Kinetic and Isotherm Study
Biosorption of Cadmium and Lead by Dry Biomass of Nostoc sp. MK-11: Kinetic and Isotherm Study
Cadmium (Cd) and lead (Pb) are global environmental pollutants. In this study, Nostoc sp. MK-11 was used as an environmentally safe, economical, and efficient biosorbent for the re...
Multi-cation biosorption by chlorella kessleri
Multi-cation biosorption by chlorella kessleri
Abstract This paper discusses the biosorption in a multi-cation system as an example of advances in the method of ions removal/binding to the biomass. ...
Simultaneous Biosorption of Chromium (III) and Chromium (VI): Application of Multiple Response Optimizations
Simultaneous Biosorption of Chromium (III) and Chromium (VI): Application of Multiple Response Optimizations
This work aims, optimization of simultaneous biosorption of Cr(III) and Cr(VI) onto Gelidilla acerosa, a marine macro algae using multiple response optimization combined with centr...
Experimental and theoritical research on the dynamical transmission of 30 keV H+ ions through polycarbonate nanocapillaries
Experimental and theoritical research on the dynamical transmission of 30 keV H+ ions through polycarbonate nanocapillaries
The ions with different incident energies transmitting through insulating nanocapillaries are studied in various configurations. For the low energy ions transmitting through nanoca...

Back to Top