Chitosan-magnetic-graphene oxide (CMGO) nanocomposite was prepared for arsenic adsorption. The nanocomposite was characterized through BET, FTIR, FESEM, EDX, and VSM analyses. These characterizations confirmed the formation of CMGO nanocomposites with high specific surface area (152.38 m2/g) and excellent saturation magnetization (49.30 emu/g). Batch adsorption experiments were conducted to evaluate the performance of the nanocomposite in the adsorption of arsenic from aqueous solution. The effects of operational parameters, adsorption kinetic, equilibrium isotherm and thermodynamics were evaluated. The removal efficiency of arsenic increased with increasing adsorbent dosage and contact time. However, the effect of pH followed a different p...
© 2017 Canadian Institute of Mining, Metallurgy and Petroleum Arsenic adversely affects gold mining ...
Higher environmental standards have made the removal of arsenic from water an important problem for ...
New-generation adsorbent, Fe3O4@SiO2/GO, was developed by modification of graphene oxide (GO) with s...
A magnetite graphene oxide chitosan (MGOCS) composite microsphere was specifically prepared to effic...
The removal of heavy metals from water has become a global environmental problem. Various materials ...
A magnetic graphene oxide (MGO) was developed for the adsorption of As(III) from aqueous solution. T...
Removal performance of arsenic in water by a novel magnetic chitosan nanoparticle (MCNP) with a diam...
Removal performance of arsenic in water by a novel magnetic chitosan nanoparticle (MCNP) with a diam...
Magnetic graphene nanoplatelet composites (MGNCs) decorated with core-shell Fe-Fe2O3 nanoparticles (...
Arsenic contamination of drinking water is a major public health concern affecting more than 200 mil...
Films made from neat chitosan and chitosan with magnetic nanoparticles (MNPs) were tested as adsorbe...
Magnetic graphene nanoplatelet composites (MGNCs) decorated with core-shell Fe-Fe2O3 nanoparticles (...
Graphene nanoplates (GNPs) can be used as a platform for homogeneous distribution of adsorbent nanop...
MIL-53(Al)-graphene oxide (GO) nanocomposites of different GO to MIL-53(Al) mass ratios (1% to 25% G...
Arsenic is highly toxic, affecting millions of people in many regions of the world. That is why deve...
© 2017 Canadian Institute of Mining, Metallurgy and Petroleum Arsenic adversely affects gold mining ...
Higher environmental standards have made the removal of arsenic from water an important problem for ...
New-generation adsorbent, Fe3O4@SiO2/GO, was developed by modification of graphene oxide (GO) with s...
A magnetite graphene oxide chitosan (MGOCS) composite microsphere was specifically prepared to effic...
The removal of heavy metals from water has become a global environmental problem. Various materials ...
A magnetic graphene oxide (MGO) was developed for the adsorption of As(III) from aqueous solution. T...
Removal performance of arsenic in water by a novel magnetic chitosan nanoparticle (MCNP) with a diam...
Removal performance of arsenic in water by a novel magnetic chitosan nanoparticle (MCNP) with a diam...
Magnetic graphene nanoplatelet composites (MGNCs) decorated with core-shell Fe-Fe2O3 nanoparticles (...
Arsenic contamination of drinking water is a major public health concern affecting more than 200 mil...
Films made from neat chitosan and chitosan with magnetic nanoparticles (MNPs) were tested as adsorbe...
Magnetic graphene nanoplatelet composites (MGNCs) decorated with core-shell Fe-Fe2O3 nanoparticles (...
Graphene nanoplates (GNPs) can be used as a platform for homogeneous distribution of adsorbent nanop...
MIL-53(Al)-graphene oxide (GO) nanocomposites of different GO to MIL-53(Al) mass ratios (1% to 25% G...
Arsenic is highly toxic, affecting millions of people in many regions of the world. That is why deve...
© 2017 Canadian Institute of Mining, Metallurgy and Petroleum Arsenic adversely affects gold mining ...
Higher environmental standards have made the removal of arsenic from water an important problem for ...
New-generation adsorbent, Fe3O4@SiO2/GO, was developed by modification of graphene oxide (GO) with s...