Thermodynamic and kinetics studies for adsorption of Pt ions complexes from the chloride solutions obtained by leaching chlorinated spent automotive catalysts on anionic exchange resin Diaion WA21J were carried out. It was found that only Si, Pt, Rh and Pd from the solution were selectively adsorbed on the resin Diaion WA21J more strongly. The adsorption equilibrium time for Pt ions was about 20h. The isothermal adsorption of Pt ions was found to fit Langmuir, Freundlich and DKR models. The maximum monolayer adsorption capacities Q max and X m of Pt ions on the resin based on Langmuir and DKR model were 4.85, 5.36 and 5.69mg/g as well as 5.01, 5.63 and 5.98mg/g for temperatures 18°C, 28°C and 40°C, respectively. The apparent adsorption energy E ad based on DKR model were −11.79, −11.04 and −11.04kJ/mol for the temperatures 18°C, 28°C and 40°C, respectively. Ion exchange was the mechanism involved in the adsorption process. The adsorption of Pt ions on the resin underwent pseudo-first-order kinetic process, and the apparent adsorption activation energy E a ,1 was 12.6kJ/mol. The intraparticle diffusion of Pt ions was a main rate-controlling step in most of time of adsorption process.