2006•Indian Journal of Chemical TechnologyOpen access

Removal of Cr(VI) from aqueous solution by adsorption onto low cost non-conventional adsorbents

A. K. Bhattacharya, Sujata Mandal, Shilpi Das

Open full text 18 citations

Abstract

Adsorption behavior of chromium, Cr(VI) from wastewater has been investigated using clarified sludge (a steel plant waste material), rice husk ash and sawdust as non-conventional adsorbents. The studies were carried out at room temperature (30 o C) following batch adsorption technique in a reciprocating shaker. Factors affecting the adsorption characteristics such as agitation time, initial metal ion concentration, adsorbent dose and pH were studied. Maximum adsorption of Cr(VI) was observed at pH 3. The experimental data fitted to Langmuir and Freundlich isotherms. The adsorption process found to follow Lagergren first order kinetics model. Adsorption capacity has been observed to follow the order clarified sludge > rice husk ash > sawdust. At pH 3 and initial Cr(VI) concentration of 3 mg/L more than 99% removal of Cr(VI) may be possible. The maximum amount of adsorbed metal (qmax) value is significantly influenced by liquid/solid ratio and by the pH values of the metal solutions.

About this research paper

What this paper is about

Adsorption behavior of chromium, Cr(VI) from wastewater has been investigated using clarified sludge (a steel plant waste material), rice husk ash and sawdust as non-conventional adsorbents. The studies were carried out at room temperature (30 o C) following batch adsorption technique in a reciprocating shaker. Factors affecting the adsorption characteristics such as agitation time, initial metal ion concentration, adsorbent dose and pH were studied. Maximum adsorption of Cr(VI) was observed at pH 3. The experimental data fitted to Langmuir and Freundlich isotherms. The adsorption process found to follow Lagergren first order kinetics model. Adsorption capacity has been observed to follow the order clarified sludge > rice husk ash > sawdust. At pH 3 and initial Cr(VI) concentration of 3 mg/L more than 99% removal of Cr(VI) may be possible. The maximum amount of adsorbed metal (qmax) value is significantly influenced by liquid/solid ratio and by the pH values of the metal solutions.

Why it matters

OpenAlex reports 18 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

Adsorption behavior of chromium, Cr(VI) from wastewater has been investigated using clarified sludge (a steel plant waste material), rice husk ash and sawdust as non-conventional adsorbents. The studies were carried out at room temperature (30 o C) following batch adsorption technique in a reciprocating shaker. Factors affecting the adsorption characteristics such as agitation time, initial metal ion concentration, adsorbent dose and pH were studied. Maximum adsorption of Cr(VI) was observed at pH 3. The experimental data fitted to Langmuir and Freundlich isotherms. The adsorption process found to follow Lagergren first order kinetics model. Adsorption capacity has been observed to follow the order clarified sludge > rice husk ash > sawdust. At pH 3 and initial Cr(VI) concentration of 3 mg/L more than 99% removal of Cr(VI) may be possible. The maximum amount of adsorbed metal (qmax) value is significantly influenced by liquid/solid ratio and by the pH values of the metal solutions.

Key concepts: Chemistry, Adsorption, Sawdust, Husk, Chromium, Freundlich equation, Langmuir, Wastewater

Related papers

Back to paper searchBrowse research topicsOriginal source
Removal of Cr(VI) from aqueous solution by adsorption onto low cost non-conventional adsorbents — Research Paper | ScholarLens