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- W3202021882 abstract "The high level of pollutants presents in water have generated important problems on the environmental and human, considering that some of these inorganic and organic contaminants are toxic to low levels of concentration. An alternative to this problem is the use of Fe-magnetic materials and nanomaterials in the adsorption process and advanced oxidation processes because they have high pollutant removal capacities and can be extracted using an external magnetic field. The efficiency of the removal of pollutants depend on the characteristics of the materials. For this, the morphology, structure, and physical and chemical properties of these materials are of great interest. Microscopy, spectroscopy, and structural micro-analysis are the main tools used for characterization.Herein, we present a review about Fe-magnetic materials and nanomaterials, including (1) general aspects of Fe-magnetic materials and nanomaterial as excellent adsorbent substrate to remove inorganic and organic pollutant, considering its different removal mechanisms and reuse, and (2) conventional and unconventional characterization techniques to evidence the morphology, structure, size, oxidation state, and crystallinity of the materials, associating each of the characteristics found (as the case may be) with its ability to eliminate pollutants. Specifically, in this section, we review examples and applications of transmission electron microscopy (TEM), scanning electron microscopy (SEM), X-ray diffraction (XRD), X-ray photoelectronic spectroscopy (XPS), and Raman and Mössbauer spectroscopy. Finally, we show two excellent removal techniques that use magnetic materials: (3) adsorption process to eliminate metal contaminants and metalloids, such as arsenic, lead, and chromium, among others, and (4) advanced oxidation processes (AOP) used for degradation of organic pollutants, for example, dyes, antibiotics, evidencing the high efficiency and removal capacity of the Fe-magnetic materials and nanomaterials, both of which are used in the removal process." @default.
- W3202021882 created "2021-10-11" @default.
- W3202021882 creator A5025527691 @default.
- W3202021882 creator A5060787804 @default.
- W3202021882 creator A5066673148 @default.
- W3202021882 creator A5085542650 @default.
- W3202021882 date "2021-01-01" @default.
- W3202021882 modified "2023-09-27" @default.
- W3202021882 title "Characterization and Application of Fe-Magnetic Materials and Nanomaterials for Application in the Aqueous Matrices Decontamination" @default.
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