Javascript must be enabled to continue!
Removal of Cadmium (II) Metal Ions from Aqueous Solutions Using Modified Kennan’s Sugarcane Bagasse Activated Carbon with Natural Zeolite
View through CrossRef
This study investigates a comparative assessment of two adsorbents, prepared activated carbon from Kennan's Sugarcane Bagasse, AC (KSCB)KOH and AC (KSCB)H<sub>3</sub>PO<sub>4</sub> combined with natural zeolite samples for cadmium(II) ions removal. Maximum Cd(II)removal was observed at pH (6.0 – 8.0) when using KOH and H<sub>3</sub>PO<sub>4</sub> respectively. The Langmuir and Freundlich isotherm models were applied to the adsorption data. The coefficients for determination of the two models were high with Langmuir model providing the best description for the experimental adsorption data. The fitting of the adsorption data into Freundlich model shows that the mode of adsorption of the metal ions by both adsorbents follows physisorption. Investigations into the maximum adsorption capacity showed that Cd(II) has an excellent adsorption on both adsorbents. Maximum adsorption capacities for Cd(II) metal ions corresponding to monolayer coverage, obtained from the Langmuir plots, were (714.29) mg/g and (270.27) mg/g onto the AC (KSCB)KOH and AC (KSCB)H<sub>3</sub>PO<sub>4</sub> combined with natural zeolite respectively. The Langmuir adsorption coefficient, K<sub>L</sub> which is related to the affinity of the adsorbents were (150.00) and (34.33) for adsorption of Cd(II) ions onto AC (KSCB)KOH AC and (KSCB)H<sub>3</sub>PO<sub>4</sub> combined with natural zeolite respectively, following the initial order. The carbonized AC (KSCB)KOH Combined with natural zeolite based - adsorbent was generally found to have an increased adsorption capacity for the metal ions than AC (KSCB)H<sub>3</sub>PO<sub>4</sub> Combined with Natural Zeolite.
Science Publishing Group
Title: Removal of Cadmium (II) Metal Ions from Aqueous Solutions Using Modified Kennan’s Sugarcane Bagasse Activated Carbon with Natural Zeolite
Description:
This study investigates a comparative assessment of two adsorbents, prepared activated carbon from Kennan's Sugarcane Bagasse, AC (KSCB)KOH and AC (KSCB)H<sub>3</sub>PO<sub>4</sub> combined with natural zeolite samples for cadmium(II) ions removal.
Maximum Cd(II)removal was observed at pH (6.
0 – 8.
0) when using KOH and H<sub>3</sub>PO<sub>4</sub> respectively.
The Langmuir and Freundlich isotherm models were applied to the adsorption data.
The coefficients for determination of the two models were high with Langmuir model providing the best description for the experimental adsorption data.
The fitting of the adsorption data into Freundlich model shows that the mode of adsorption of the metal ions by both adsorbents follows physisorption.
Investigations into the maximum adsorption capacity showed that Cd(II) has an excellent adsorption on both adsorbents.
Maximum adsorption capacities for Cd(II) metal ions corresponding to monolayer coverage, obtained from the Langmuir plots, were (714.
29) mg/g and (270.
27) mg/g onto the AC (KSCB)KOH and AC (KSCB)H<sub>3</sub>PO<sub>4</sub> combined with natural zeolite respectively.
The Langmuir adsorption coefficient, K<sub>L</sub> which is related to the affinity of the adsorbents were (150.
00) and (34.
33) for adsorption of Cd(II) ions onto AC (KSCB)KOH AC and (KSCB)H<sub>3</sub>PO<sub>4</sub> combined with natural zeolite respectively, following the initial order.
The carbonized AC (KSCB)KOH Combined with natural zeolite based - adsorbent was generally found to have an increased adsorption capacity for the metal ions than AC (KSCB)H<sub>3</sub>PO<sub>4</sub> Combined with Natural Zeolite.
Related Results
Hydatid Disease of The Brain Parenchyma: A Systematic Review
Hydatid Disease of The Brain Parenchyma: A Systematic Review
Abstarct
Introduction
Isolated brain hydatid disease (BHD) is an extremely rare form of echinococcosis. A prompt and timely diagnosis is a crucial step in disease management. This ...
The effect of heavy metal composition on the performance of sugarcane bagasse as an adsorbant in water treatment
The effect of heavy metal composition on the performance of sugarcane bagasse as an adsorbant in water treatment
Wastewater produced by the industries is potentially harmful to the ecosystem because of various contaminants like heavy metals that find their way into soil and water supplies. In...
MODELLING AND OPTIMIZATION OF CADMIUM REMOVAL FROM WASTEWATER ONTO SUGARCANE BAGASSE ACTIVATED CARBON
MODELLING AND OPTIMIZATION OF CADMIUM REMOVAL FROM WASTEWATER ONTO SUGARCANE BAGASSE ACTIVATED CARBON
The presence of sugarcane bagasse as an agricultural waste in the environment is a cause for concern as it defaces the environment. It is bulky and difficult to manage. This prompt...
Zeolite A powder and beads from sugarcane bagasse fly ash modified with iron(III) oxide-hydroxide for lead adsorption
Zeolite A powder and beads from sugarcane bagasse fly ash modified with iron(III) oxide-hydroxide for lead adsorption
AbstractThe discharging of lead-contaminated wastewater is a concern because of its toxicity to living organisms and water quality resulting in dangerous water consumption, so it i...
High quality sugarcane bagasse-citric acid particleboards
High quality sugarcane bagasse-citric acid particleboards
AbstractThe productivity of Indonesian sugarcane plantation, especially in East Java province reached 1.186.515 tonnes in 2017. Sugarcane liquid is extracted as sugar raw material ...
Biosorption potential of natural, pyrolysed and acid-assisted pyrolysed sugarcane bagasse for the removal of lead from contaminated water
Biosorption potential of natural, pyrolysed and acid-assisted pyrolysed sugarcane bagasse for the removal of lead from contaminated water
Lead (Pb) is a ubiquitous pollutant which poses serious threats to plants, animals and humans once entered into the food chain via contaminated industrial effluents on their discha...
Cationic oxides and dioxides of modified sugarcane bagasse beads with applications as low-cost sorbents for direct red 28 dye
Cationic oxides and dioxides of modified sugarcane bagasse beads with applications as low-cost sorbents for direct red 28 dye
AbstractThe direct red 28 (DR28) dye contamination in wastewater blocks the transmission of light into the water body resulting in the inability to photosynthesize by aquatic life....

