Ore Dressing and Technological Characterization of Palygorskite from Piauí/Brazil for Application as Adsorbent of Heavy Metals

The Minerals, Metals and Materials Society
Karla M. A. Simões Bruna L. Novo Adriana A. S. Felix Julio C. Afonso Luiz C. Bertolino Fernanda A. N. G. Silva
Organization:
The Minerals, Metals and Materials Society
Pages:
7
File Size:
601 KB
Publication Date:
Mar 1, 2017

Abstract

Palygorskite (Mg,Al)5Si8O20(OH)2(OH2)4.4H2O, is a lamellar mineral with a fibrous morphology. The micropores and canals in the structure give a high specific surface and sorption capacity of various kinds of species. Guadalupe’s palygorskite (Piauí/Brazil) run of mine (ROM) was prepared (PA) and characterized by XRD and XRF. PA is composed by palygorskite, kaolinite, quartz and goethite and has 15.8, 58.0, 4.2 and 7.6% of SiO2, Al2O3, MgO and Fe2O3, respectively. Wet magnetic separation tests were conducted with PA obtaining the magnetic and non-magnetic fractions (PAM and PANM, respectively). PANM was characterized by XRD and XRF and the results of the XRF indicated that the iron content in the PA decreased 8.0% in the non-magnetic product. A new wet sieving was conducted with PANM to obtain a purer fraction (−20 μm) (PANMP) which was characterized by XRD, XRF, CEC, Zeta potential, SEM, TG/DTG. The result showed that this mineral could be used as adsorbent of heavy metals.
Citation

APA: Karla M. A. Simões Bruna L. Novo Adriana A. S. Felix Julio C. Afonso Luiz C. Bertolino Fernanda A. N. G. Silva  (2017)  Ore Dressing and Technological Characterization of Palygorskite from Piauí/Brazil for Application as Adsorbent of Heavy Metals

MLA: Karla M. A. Simões Bruna L. Novo Adriana A. S. Felix Julio C. Afonso Luiz C. Bertolino Fernanda A. N. G. Silva Ore Dressing and Technological Characterization of Palygorskite from Piauí/Brazil for Application as Adsorbent of Heavy Metals. The Minerals, Metals and Materials Society, 2017.

Export
Purchase this Article for $25.00

Create a Guest account to purchase this file
- or -
Log in to your existing Guest account