2019Desalination and Water TreatmentOpen access

Removal of heavy metals by tight γ-Al2O3 ultrafiltration membrane at low pressure

Majda Breida, Saâd Alami Younssi, Mama El Rhazi, M. Bouhria

Open full text 6 citations

Abstract

ABSTRACT The removal of chromate (Cr(VI)) and copper (Cu(II)) from water was investigated by using ultrafiltration (UF) as a possible alternative to the conventional methods of metal ions removal. The influence of experimental parameters such as pH, pressure and concentration was investigated on different solutions (K 2 Cr 2 O 7 , CuSO 4 and Cu(NO 3 ) 2 ). The influence of salts’ presence (NaNO 3 and Na 2 SO 4 ), with different concentrations, on metal removal was studied. The rejection of Cr(VI) was found to be improved with the increase of pH (with high rejection of 97% at pH above 9), whereas for Cu(II) the best rejections were obtained at 2.60 (with high rejections of 80% and 50%, for Cu(NO 3 ) 2 and CuSO 4 ). The increase of the applied pressure causes an increase of metals’ rejections and fluxes. Furthermore, an insignificant polarization concentration phenomenon was observed. The Cr(VI) rejection was observed to be independent from the increase in concentration (>90% for all concentrations, ranging from 10 to 150 mg (Cr(VI))/L) and a decrease in rejection with increasing concentration was observed for copper salts. The permeate flux was found to be lower at higher feed concentration, but varied only marginally with change in pH value. The metals’ retentions depend strongly on the solute type (including charge valency and hydration energy). The γ-Al 2 O 3 UF was found to be an efficient process to remove/recover heavy metals from industrial discharges.

Open-access reader

About this research paper

What this paper is about

ABSTRACT The removal of chromate (Cr(VI)) and copper (Cu(II)) from water was investigated by using ultrafiltration (UF) as a possible alternative to the conventional methods of metal ions removal. The influence of experimental parameters such as pH, pressure and concentration was investigated on different solutions (K 2 Cr 2 O 7 , CuSO 4 and Cu(NO 3 ) 2 ). The influence of salts’ presence (NaNO 3 and Na 2 SO 4 ), with different concentrations, on metal removal was studied. The rejection of Cr(VI) was found to be improved with the increase of pH (with high rejection of 97% at pH above 9), whereas for Cu(II) the best rejections were obtained at 2.60 (with high rejections of 80% and 50%, for Cu(NO 3 ) 2 and CuSO 4 ). The increase of the applied pressure causes an increase of metals’ rejections and fluxes. Furthermore, an insignificant polarization concentration phenomenon was observed. The Cr(VI) rejection was observed to be independent from the increase in concentration (>90% for all concentrations, ranging from 10 to 150 mg (Cr(VI))/L) and a decrease in rejection with increasing concentration was observed for copper salts. The permeate flux was found to be lower at higher feed concentration, but varied only marginally with change in pH value. The metals’ retentions depend strongly on the solute type (including charge valency and hydration energy). The γ-Al 2 O 3 UF was found to be an efficient process to remove/recover heavy metals from industrial discharges.

Why it matters

OpenAlex reports 6 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

ABSTRACT The removal of chromate (Cr(VI)) and copper (Cu(II)) from water was investigated by using ultrafiltration (UF) as a possible alternative to the conventional methods of metal ions removal. The influence of experimental parameters such as pH, pressure and concentration was investigated on different solutions (K 2 Cr 2 O 7 , CuSO 4 and Cu(NO 3 ) 2 ). The influence of salts’ presence (NaNO 3 and Na 2 SO 4 ), with different concentrations, on metal removal was studied. The rejection of Cr(VI) was found to be improved with the increase of pH (with high rejection of 97% at pH above 9), whereas for Cu(II) the best rejections were obtained at 2.60 (with high rejections of 80% and 50%, for Cu(NO 3 ) 2 and CuSO 4 ). The increase of the applied pressure causes an increase of metals’ rejections and fluxes. Furthermore, an insignificant polarization concentration phenomenon was observed. The Cr(VI) rejection was observed to be independent from the increase in concentration (>90% for all concentrations, ranging from 10 to 150 mg (Cr(VI))/L) and a decrease in rejection with increasing concentration was observed for copper salts. The permeate flux was found to be lower at higher feed concentration, but varied only marginally with change in pH value. The metals’ retentions depend strongly on the solute type (including charge valency and hydration energy). The γ-Al 2 O 3 UF was found to be an efficient process to remove/recover heavy metals from industrial discharges.

Key concepts: Adsorption, Freundlich equation, Graphene, Nano-, Sorption, Langmuir adsorption model, Langmuir, Diffusion

Related papers

Back to paper searchBrowse research topicsOriginal source
Removal of heavy metals by tight γ-Al2O3 ultrafiltration membrane at low pressure — Research Paper | ScholarLens