2013WIT transactions on ecology and the environmentOpen access

Sorption of phenol from aqueous solutions using acid-treated rice husk

Samah Daffalla, Hilmi Mukhtar, Maizatul Shima Shaharun

Open full text 4 citations

Abstract

In this study, the development of low-cost adsorbent material from cheap abundant rice husk was developed via sulfuric acid treatment.The physiochemical properties and functional groups characterization of the adsorbents were evaluated.The effects of pH and contact time were studied in batch experiments.It was found that sulfuric acid treatment affects the pore size distribution, surface area, morphological structure and functional groups of the rice husk.Analysis showed that the surface area of rice husk was increased 7 times from 7.14 to 50.17 m 2 .g-1 .In addition, the surface structure of the rice husk was changed from a non-porous to a porous surface after treatment.On the other hand, the uptake of phenol onto the rice husk was increased from 20.06 to 48.62% after treatment.Further, the percentage adsorption of phenol increased with the increase of the contact time.The maximum uptake of phenol can be obtained at pH 4. The equilibrium data were well described by the Freundlich model, while the kinetic data were well fitted to the models of pseudo second order and Elovich, and followed closely by the Elovich chemisorption model.

Open-access reader

About this research paper

What this paper is about

In this study, the development of low-cost adsorbent material from cheap abundant rice husk was developed via sulfuric acid treatment.The physiochemical properties and functional groups characterization of the adsorbents were evaluated.The effects of pH and contact time were studied in batch experiments.It was found that sulfuric acid treatment affects the pore size distribution, surface area, morphological structure and functional groups of the rice husk.Analysis showed that the surface area of rice husk was increased 7 times from 7.14 to 50.17 m 2 .g-1 .In addition, the surface structure of the rice husk was changed from a non-porous to a porous surface after treatment.On the other hand, the uptake of phenol onto the rice husk was increased from 20.06 to 48.62% after treatment.Further, the percentage adsorption of phenol increased with the increase of the contact time.The maximum uptake of phenol can be obtained at pH 4. The equilibrium data were well described by the Freundlich model, while the kinetic data were well fitted to the models of pseudo second order and Elovich, and followed closely by the Elovich chemisorption model.

Why it matters

OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

In this study, the development of low-cost adsorbent material from cheap abundant rice husk was developed via sulfuric acid treatment.The physiochemical properties and functional groups characterization of the adsorbents were evaluated.The effects of pH and contact time were studied in batch experiments.It was found that sulfuric acid treatment affects the pore size distribution, surface area, morphological structure and functional groups of the rice husk.Analysis showed that the surface area of rice husk was increased 7 times from 7.14 to 50.17 m 2 .g-1 .In addition, the surface structure of the rice husk was changed from a non-porous to a porous surface after treatment.On the other hand, the uptake of phenol onto the rice husk was increased from 20.06 to 48.62% after treatment.Further, the percentage adsorption of phenol increased with the increase of the contact time.The maximum uptake of phenol can be obtained at pH 4. The equilibrium data were well described by the Freundlich model, while the kinetic data were well fitted to the models of pseudo second order and Elovich, and followed closely by the Elovich chemisorption model.

Key concepts: Husk, Sulfuric acid, Adsorption, Sorption, Aqueous solution, Phenol, Chemistry, Response surface methodology

Related papers

Back to paper searchBrowse research topicsOriginal source
Sorption of phenol from aqueous solutions using acid-treated rice husk — Research Paper | ScholarLens