J.R. Parga, G. González
This study investigates the thermodynamic aspects of strontium adsorption on iron species produced through electrocoagulation processes. The objective is to gain a better understanding of the parameters influencing the adsorption mechanism and efficiency. A series of controlled experiments were conducted using electrocoagulated iron to assess strontium removal effectiveness under various conditions. The interactions between strontium ions and iron surfaces were analyzed, emphasizing key thermodynamic principles, including adsorption isotherms and energy changes associated with the adsorption process. Results demonstrated that strontium was successfully removed from aqueous solutions, with optimal conditions identified that enhance adsorption capacity. The findings contribute to advancing the knowledge of electrocoagulation as a viable method for removing heavy metals from wastewater and provide insights into improving operational parameters for effective water treatment applications.
@article{e0f8dca5-0112-4292-9ba8-6152da8a6b3f,
title={Thermodynamic studies of the strontium adsorption on iron species generated by electrocoagulation},
author={J.R. Parga and G. González},
year={2012},
language={es}
}TY - JOUR TI - Thermodynamic studies of the strontium adsorption on iron species generated by electrocoagulation AU - J.R. Parga AU - G. González PY - 2012 LA - es ER -
Alain Vignes
This book provides a comprehensive overview of the fundamental principles of extractive metallurgy, with a specific focus on basic thermodynamics and
MICHAEL NICOL
This book provides a comprehensive overview of hydrometallurgy, emphasizing the theoretical underpinnings and key processes involved. The objective is