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PMID: 29249029 Published · ppublish English Journal Article

Efficient fluoride removal using Al-Cu oxide nanoparticles supported on steel slag industrial waste solid.

Environmental science and pollution research international ·Vol. 25 ·No. 7 ·2018-03-00 ·页码 6414-6428

Blanco-Flores A, Arteaga-Larios N, Pérez-García V, Martínez-Gutiérrez J, Ojeda-Escamilla M, Rodríguez-Torres I

Abstract

A SSW/Al-Cu formed from an industrial solid waste and Al-Cu Nps are utilized for the removal of fluoride from aqueous solutions. The SSW/Al-Cu was obtained by a chemical reduction method. The SSW/Al-Cu was characterized by TEM, SEM, FT-IR, XRD, BET, and pHzpc techniques. The Nps were formed as bimetallic oxides and deposited in the form of spheroidal particles forming agglomerations. The sizes of these particles range from 1 to 3 nm. The surface area and average pore width of SSW/Al-Cu were 2.99 m2/g and 17.09 nm, respectively. The adsorption kinetics were better described using the second-order model, pointing to chemical adsorption with an equilibrium time of 540 min. The thermodynamic parameters obtained here confirm the spontaneous and endothermic nature of the process. The percentage of fluoride removal was 89.5% using the four-bladed disk turbine, and computational fluid dynamics (CFD) modeling demonstrated that using the four-bladed disk turbine helped improve the fluoride removal process. The maximum adsorption capacity was 3.99 mg/g. The Langmuir-Freundlich model best describes the adsorption process, which occurred by a combination of mechanisms, such as electrostatic interactions between the ions involved in the process. This study proves that the chemical modification of this waste solid created an efficient bimetallic nanomaterial for fluoride removal. Furthermore, the method of preparation of these nanocomposites is quite scalable.

Keywords
Adsorption mechanism Al/Cu nanoparticles CFD Chemical reduction method Fluoride adsorption Mathematical modeling SEM morphological analyses Steel slag waste
MeSH 主题词
Adsorption Aluminum Copper Fluorides/analysis Industrial Waste/analysis Kinetics Nanocomposites/chemistry Oxides Particle Size Solid Waste/analysis Steel/chemistry Surface Properties Water Pollutants, Chemical/analysis Water Purification/methods
化学物质
Industrial Waste Oxides Solid Waste Water Pollutants, Chemical Steel Copper Aluminum Fluorides
作者与单位
共 6 位作者,点击展开单位 / ORCID
Blanco-Flores Alien
Instituto de Metalurgia-Facultad de Ingeniería, Universidad Autónoma de San Luis Potosí, Av. Sierra Leona 550, Lomas 2a sección, 78210, San Luis Potosí, Mexico. | División de Mecánica, Tecnológico de Estudios Superiores de Tianguistenco, Carretera Tenango-Marquesa km 22, Santiago Tilapa, 52650, Santiago Tianguistenco, Estado de México, Mexico.
Arteaga-Larios Nubia
Instituto de Metalurgia-Facultad de Ingeniería, Universidad Autónoma de San Luis Potosí, Av. Sierra Leona 550, Lomas 2a sección, 78210, San Luis Potosí, Mexico.
Pérez-García Víctor
Instituto de Metalurgia-Facultad de Ingeniería, Universidad Autónoma de San Luis Potosí, Av. Sierra Leona 550, Lomas 2a sección, 78210, San Luis Potosí, Mexico.
Martínez-Gutiérrez José
Instituto de Metalurgia-Facultad de Ingeniería, Universidad Autónoma de San Luis Potosí, Av. Sierra Leona 550, Lomas 2a sección, 78210, San Luis Potosí, Mexico.
Ojeda-Escamilla María
Instituto de Metalurgia-Facultad de Ingeniería, Universidad Autónoma de San Luis Potosí, Av. Sierra Leona 550, Lomas 2a sección, 78210, San Luis Potosí, Mexico.
Rodríguez-Torres Israel ORCID
Instituto de Metalurgia-Facultad de Ingeniería, Universidad Autónoma de San Luis Potosí, Av. Sierra Leona 550, Lomas 2a sección, 78210, San Luis Potosí, Mexico. [email protected].
Article Info
Journal
Environmental science and pollution research international
Abbr.
Environ Sci Pollut Res Int
ISSN
1614-7499
Corresponding email
Published
2018-03-00
电子出版
2017-00-16
页码
6414-6428
Language
English
Country/Region
Germany
NLM ID
9441769
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