International audienceThis study was carried out to examine the adsorption capacity of the flax fibres tows (FFT) adsorbent for the removal of heavy metals from aqueous solution using batch-adsorption techniques. The influence of contact time, pH, initial concentration and adsorbent quantity on the adsorption process was studied. Results revealed that adsorption rate increased rapidly, and the optimal removal efficiency was reached within 60 min. The adsorption isotherms could well be fitted by the Langmuir model. The RL value in the present investigation was less than one, indicating that the adsorption of the metal ions onto FFT is favourable. After treatment of the aqueous solution with FFT, the levels of heavy metals were observed to de...
Sorption potential of waste short hemp fibers for Pb2+, Cd2+ and Zn2+ ions from aqueous media was ex...
The Zero Valent Iron (ZVI) is the material most commonly used for permeable reactive barriers (PRB)....
The removal of Pb(II) and Cd(II), by treated rubber wood fibre, a low-cost material, has been found ...
International audienceThis study was carried out to examine the adsorption capacity of the flax fibr...
This study used alfa grass fibers as a natural low-cost adsorbent to remove lead, copper, and zinc i...
Lignocellulosic fibers extracted from plants are considered an interesting raw material for environm...
Increased consciousness for protecting the urban environment has prompted a search for alternative t...
In this thesis work, the purification efficiency of a filtration device, consisting of crushed sand ...
In this study, waste flax fibers with different levels of cellulosic and noncellulosic components we...
The feasibility of tea fiber waste to remove cadmium, nickel, zinc, copper and lead from wastewater ...
In this study, biosorption of Cu(II) and Zn(II) ions from aqueous solutions by water hyacinth fiber ...
Biosorption, an innovative and low-cost effective method for removal of heavy metal ions from wastew...
International audienceFiltration tests were carried out in laboratory columns filled with crushed sa...
This study describes the valorization of a pine wood by-product (Pinus pinaster) in the form of indi...
Sorption potential of waste short hemp fibers for Pb2+, Cd2+ and Zn2+ ions from aqueous media was ex...
The Zero Valent Iron (ZVI) is the material most commonly used for permeable reactive barriers (PRB)....
The removal of Pb(II) and Cd(II), by treated rubber wood fibre, a low-cost material, has been found ...
International audienceThis study was carried out to examine the adsorption capacity of the flax fibr...
This study used alfa grass fibers as a natural low-cost adsorbent to remove lead, copper, and zinc i...
Lignocellulosic fibers extracted from plants are considered an interesting raw material for environm...
Increased consciousness for protecting the urban environment has prompted a search for alternative t...
In this thesis work, the purification efficiency of a filtration device, consisting of crushed sand ...
In this study, waste flax fibers with different levels of cellulosic and noncellulosic components we...
The feasibility of tea fiber waste to remove cadmium, nickel, zinc, copper and lead from wastewater ...
In this study, biosorption of Cu(II) and Zn(II) ions from aqueous solutions by water hyacinth fiber ...
Biosorption, an innovative and low-cost effective method for removal of heavy metal ions from wastew...
International audienceFiltration tests were carried out in laboratory columns filled with crushed sa...
This study describes the valorization of a pine wood by-product (Pinus pinaster) in the form of indi...
Sorption potential of waste short hemp fibers for Pb2+, Cd2+ and Zn2+ ions from aqueous media was ex...
The Zero Valent Iron (ZVI) is the material most commonly used for permeable reactive barriers (PRB)....
The removal of Pb(II) and Cd(II), by treated rubber wood fibre, a low-cost material, has been found ...