JOURNAL ARTICLE

Phenol Adsorption on Nitrogen-enriched Activated Carbon Prepared from Bamboo Residues

Ji ZhangXiaojuan JinJianmin GaoXiu-Dong Zhang

Year: 2013 Journal:   BioResources Vol: 9 (1)   Publisher: North Carolina State University

Abstract

Nitrogen-enriched activated carbons prepared from bamboo residues were characterized by means of BET, XPS, and elemental analysis. Then adsorption experiments were carried out to study the effects of various physicochemical parameters such as contact time, temperature, pH, and initial concentration. Adsorption equilibrium was achieved within 120 min at a phenol concentration of 250 mg/L. When the pH was 4 and 0.1 g of the carbon absorbent and 100 mL of phenol solution at 250 mg/L were used, the phenol adsorption of the ACs with melamine and urea modifications were 219.09 mg/g and 214.45 mg/g, respectively. Both were greater than the capacity of unmodified AC, which was 163.82 mg/g. The Langmuir isotherm adsorption equation well described the experimental adsorption isotherms. The adsorption kinetics was well explained by pseudo-second-order kinetics rather than the pseudo-first-order. In conclusion, the nitrogen-enriched activated carbon proposed as adsorbents of the phenol wastewater were shown to be effective, which also means that bamboo residues have promise as activated carbon precursors for liquid phase adsorbents for environmental protection.

Keywords:
Adsorption Activated carbon Chemistry Phenol Melamine Langmuir adsorption model Nitrogen Kinetics Nuclear chemistry Bamboo Carbon fibers Inorganic chemistry Organic chemistry Materials science Composite number

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Topics

Adsorption and biosorption for pollutant removal
Physical Sciences →  Environmental Science →  Water Science and Technology

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