Phenol removal from aqueous solution using silica and activated carbon derived from rice husk

Author:

Asgharnia Hosseinali1,Nasehinia Hamidreza2,Rostami Roohollah2,Rahmani Marziah2,Mehdinia Seyed Mahmoud3

Affiliation:

1. Dept. of Environmental Health Engineering, Babol University of Medical Sciences, Babol, Iran

2. Research center for health sciences and technologies, Semnan University of Medical Sciences, Semnan, Iran

3. Dept. of Environmental Health Engineering, Semnan University of Medical Sciences, Semnan, Iran

Abstract

Abstract Phenol and its derivatives are organic pollutants with dangerous effects, such as poisoning, carcinogenicity, mutagenicity, and teratogenicity in humans and other organisms. In this study, the removal of phenol from aqueous solution by adsorption on silica and activated carbon of rice husk was investigated. In this regard, the effects of initial concentration of phenol, pH, dosage of the adsorbents, and contact time on the adsorption of phenol were investigated. The results showed that the maximum removal of phenol by rice husk silica (RHS) and rice husk activated carbon (RHAC) in the initial concentration of 1 mgL−1 phenol, 2 gL−1 adsorbent mass, 120 min contact time, and pH 5 (RHS) or pH 6 (RHAC) were obtained up to 91% and 97.88%, respectively. A significant correlation was also detected between increasing contact times and phenol removal for both adsorbents (p < 0.01). The adsorption process for both of the adsorbents was also more compatible with the Langmuir isotherm. The results of this study showed that RHS and RHAC can be considered as natural and inexpensive adsorbents for water treatment.

Publisher

IWA Publishing

Subject

Water Science and Technology

Reference44 articles.

1. Adsorption studies on rice husk: removal and recovery of Cd (II) from wastewater;Bioresource Technology,2003

2. Characterization the removal of phenol from aqueous solution in fluidized bed column by rice husk adsorbent;Research Journal of Recent Sciences,2012

3. Ferric oxide nanoparticles decorated carbon nanotubes and carbon nanofibers: from synthesis to enhanced removal of phenol;Journal of Saudi Chemical Society,2015

4. Performance evaluation of electrochemical process using iron and aluminum electrodes in phenol removal from synthetic aqueous environment;Iranian Journal of Health and Environment,2013

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