This study was conducted to investigate the sorption mechanism of Pb2+ ions from aqueous solution onto
Imperata cylindrica (IC) dried leaf particles. The effect of temperatures (30, 35 and 40oC) was scrutinised
from a batch adsorption system using a synthetic liquid waste containing Pb2+ ions. Adsorption of lead ions
mechanism was investigated by intraparticle diffusion model. The results showed that higher adsorption rate
occurred at higher temperature, and obeyed the pseudo second order adsorption model. The overall rate of
lead uptake was found to be controlled by external mass transfer at the beginning of adsorption, then
gradually changes to intraparticle diffusion controlled at a later stage. The intraparticle diffusion constant
increased with increasing temperature. The values of effective diffusion coefficient (Di) increased at higher
temperatures, which were 5.5466 × 10−9, 6.8215 × 10−9, and 7.3726 × 10−9 m2/s at 30, 35, and 40 ◦C,
respectivel