Multi-analytical assessment of iron and steel slag characteristics to estimate the removal of metalloids from contaminated water


Por: Mercado-Borrayo, BM, Schouwenaars, R, Gonzalez-Chavez, JL, Ramirez-Zamora, RM

Publicada: 1 ene 2013
Categoría: Environmental Engineering

Resumen:
A multi-analytical approach was used to develop a mathematical regression model to calculate the residual concentration of borate ions in water present at high initial content, as a function of the main physicochemical, mineralogical and electrokinetic characteristics after adsorption on five different types of iron and steel slag. The analytical techniques applied and slag properties obtained in this work were: X-ray Fluorescence for the identification of the main chemical compounds, X-ray Diffraction to determine crystalline phases, physical adsorption of nitrogen for the quantification of textural properties and zeta-potential for electrokinetic measurements of slag particles. Adsorption tests were carried out using the bottle-point technique and a highly concentrated borate solution (700 mg B/L) at pH 10, with a slag dose of 10 g/L. An excellent correlation between the residual concentration of boron and three independent variables (content of magnesium oxide, zeta potential and specific surface area) was established for the five types of slag tested in this work. This shows that the methodology based on a multi-analytical approach is a very strong and useful tool to estimate the performance of iron and steel slag as adsorbent of metalloids. © 2013 Copyright Taylor and Francis Group, LLC.

Filiaciones:
Mercado-Borrayo, BM:
 Univ Nacl Autonoma Mexico, Inst Ingn, Mexico City 04510, DF, Mexico

Schouwenaars, R:
 Univ Nacl Autonoma Mexico, DIMEI, Dept Mat & Manufactura, Fac Ingn, Mexico City 04510, DF, Mexico

Gonzalez-Chavez, JL:
 Univ Nacl Autonoma Mexico, Dept Quim Analit, Fac Quim, Mexico City 04510, DF, Mexico

Ramirez-Zamora, RM:
 Univ Nacl Autonoma Mexico, Inst Ingn, Mexico City 04510, DF, Mexico
ISSN: 10934529
Editorial
TAYLOR & FRANCIS INC, 325 CHESTNUT ST, SUITE 800, PHILADELPHIA, PA 19106 USA, Estados Unidos America
Tipo de documento: Article
Volumen: 48 Número: 8
Páginas: 887-895
WOS Id: 000328535200007
ID de PubMed: 23485238