Low-cost adsorbents from bio-waste for the removal of dyes from aqueous solution
Activated carbons (ACs) were developed from bio-waste materials like rice husk and peanut shell (PS) by various physicochemical activation methods. PS char digested in nitric acid followed by treatment at 673 K resulted in high surface area up to ∼585 m 2 /g. The novelty of the present study is the...
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Published in | Environmental science and pollution research international Vol. 20; no. 6; pp. 4111 - 4124 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
Berlin/Heidelberg
Springer-Verlag
01.06.2013
Springer Nature B.V |
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Abstract | Activated carbons (ACs) were developed from bio-waste materials like rice husk and peanut shell (PS) by various physicochemical activation methods. PS char digested in nitric acid followed by treatment at 673 K resulted in high surface area up to ∼585 m
2
/g. The novelty of the present study is the identification of oxygen functional groups formed on the surface of activated carbons by infrared and X-ray photoelectron spectroscopy and quantification by using temperature programmed decomposition (TPD). Typical TPD data indicated that each activation method may lead to varying amounts of acidic and basic functional groups on the surface of the adsorbent, which may be a crucial factor in determining the adsorption capacity. It was shown that ACs developed during the present study are good adsorbents, especially for the removal of a model textile dye methylene blue (MB) from aqueous solution. As MB is a basic dye, H
2
O
2
-treated rice husk showed the best adsorption capacity, which is in agreement with the acidic groups present on the surface. Removal of the dye followed Langmuir isotherm model, whereas MB adsorption on ACs followed pseudo-second-order kinetics. |
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AbstractList | Activated carbons (AC) were developed from bio-waste materials like rice husk and peanut shell (PS) by various physicochemical activation methods. PS char digested in nitric acid followed by treatment at 673 K resulted in high surface area up to 585 m2/g. The novelty of the present study is the identification of oxygen functional groups formed on the surface of activated carbons by infrared and X-ray photoelectron spectroscopy and quantification by using temperature programmed decomposition (TPD). Typical TPD data indicated that each activation method may lead to varying amounts of acidic and basic functional groups on the surface of the adsorbent, which may be a crucial factor in determining the adsorption capacity. It was shown that ACs developed during the present study are good adsorbents, especially for the removal of a model textile dye methylene blue (MB) from aqueous solution. As MB is a basic dye, H2O2-treated rice husk showed the best adsorption capacity, which is in agreement with the acidic groups present on the surface. Removal of the dye followed Langmuir isotherm model, whereas MB adsorption on ACs followed pseudo-second-order kinetics. [PUBLICATION ABSTRACT] Activated carbons (ACs) were developed from bio-waste materials like rice husk and peanut shell (PS) by various physicochemical activation methods. PS char digested in nitric acid followed by treatment at 673 K resulted in high surface area up to ∼585 m 2 /g. The novelty of the present study is the identification of oxygen functional groups formed on the surface of activated carbons by infrared and X-ray photoelectron spectroscopy and quantification by using temperature programmed decomposition (TPD). Typical TPD data indicated that each activation method may lead to varying amounts of acidic and basic functional groups on the surface of the adsorbent, which may be a crucial factor in determining the adsorption capacity. It was shown that ACs developed during the present study are good adsorbents, especially for the removal of a model textile dye methylene blue (MB) from aqueous solution. As MB is a basic dye, H 2 O 2 -treated rice husk showed the best adsorption capacity, which is in agreement with the acidic groups present on the surface. Removal of the dye followed Langmuir isotherm model, whereas MB adsorption on ACs followed pseudo-second-order kinetics. Activated carbons (ACs) were developed from bio-waste materials like rice husk and peanut shell (PS) by various physicochemical activation methods. PS char digested in nitric acid followed by treatment at 673 K resulted in high surface area up to 585 m super(2)/g. The novelty of the present study is the identification of oxygen functional groups formed on the surface of activated carbons by infrared and X-ray photoelectron spectroscopy and quantification by using temperature programmed decomposition (TPD). Typical TPD data indicated that each activation method may lead to varying amounts of acidic and basic functional groups on the surface of the adsorbent, which may be a crucial factor in determining the adsorption capacity. It was shown that ACs developed during the present study are good adsorbents, especially for the removal of a model textile dye methylene blue (MB) from aqueous solution. As MB is a basic dye, H sub(2)O sub(2)-treated rice husk showed the best adsorption capacity, which is in agreement with the acidic groups present on the surface. Removal of the dye followed Langmuir isotherm model, whereas MB adsorption on ACs followed pseudo-second-order kinetics. Activated carbons (ACs) were developed from bio-waste materials like rice husk and peanut shell (PS) by various physicochemical activation methods. PS char digested in nitric acid followed by treatment at 673 K resulted in high surface area up to ∼585 m(2)/g. The novelty of the present study is the identification of oxygen functional groups formed on the surface of activated carbons by infrared and X-ray photoelectron spectroscopy and quantification by using temperature programmed decomposition (TPD). Typical TPD data indicated that each activation method may lead to varying amounts of acidic and basic functional groups on the surface of the adsorbent, which may be a crucial factor in determining the adsorption capacity. It was shown that ACs developed during the present study are good adsorbents, especially for the removal of a model textile dye methylene blue (MB) from aqueous solution. As MB is a basic dye, H(2)O(2)-treated rice husk showed the best adsorption capacity, which is in agreement with the acidic groups present on the surface. Removal of the dye followed Langmuir isotherm model, whereas MB adsorption on ACs followed pseudo-second-order kinetics. |
Author | Mahammadunnisa, Sk Sreedhar, B. Manoj Kumar Reddy, P. Ramaraju, B. Subrahmanyam, Ch |
Author_xml | – sequence: 1 givenname: P. surname: Manoj Kumar Reddy fullname: Manoj Kumar Reddy, P. organization: Department of Chemistry, Indian Institute of Technology – sequence: 2 givenname: Sk surname: Mahammadunnisa fullname: Mahammadunnisa, Sk organization: Department of Chemistry, Indian Institute of Technology – sequence: 3 givenname: B. surname: Ramaraju fullname: Ramaraju, B. organization: Department of Chemistry, Indian Institute of Technology – sequence: 4 givenname: B. surname: Sreedhar fullname: Sreedhar, B. organization: Inorganic Chemistry Division, Indian Institute of Chemical Technology – sequence: 5 givenname: Ch surname: Subrahmanyam fullname: Subrahmanyam, Ch email: csubbu@iith.ac.in organization: Department of Chemistry, Indian Institute of Technology |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/23233187$$D View this record in MEDLINE/PubMed |
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Keywords | Rice husk Adsorption Surface analysis Activated carbon Peanut shell Methylene blue |
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Snippet | Activated carbons (ACs) were developed from bio-waste materials like rice husk and peanut shell (PS) by various physicochemical activation methods. PS char... Activated carbons (AC) were developed from bio-waste materials like rice husk and peanut shell (PS) by various physicochemical activation methods. PS char... |
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SubjectTerms | Activated carbon Activation Adsorbents Adsorption Aquatic Pollution Aqueous solutions Atmospheric Protection/Air Quality Control/Air Pollution Bioremediation Carbon - chemistry Color removal Coloring Agents - chemistry Coloring Agents - isolation & purification Dyes Earth and Environmental Science Ecotoxicology Environment Environmental Chemistry Environmental Health Fourier transforms Functional groups Hydrogen Peroxide Hydrogen-Ion Concentration Industrial wastes Infrared spectroscopy Kinetics Methylene blue Methylene Blue - chemistry Methylene Blue - isolation & purification Nitric acid Photoelectron Spectroscopy Pollutants Polystyrene resins Research Article Rice Solutions Studies Surface chemistry Temperature Textiles Thermodynamics Waste materials Waste Water Technology Water Management Water Pollutants, Chemical Water Pollution Control Water Purification - economics Water Purification - methods |
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Title | Low-cost adsorbents from bio-waste for the removal of dyes from aqueous solution |
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