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Artikel ; Online: Development of high-capacity surface-engineered MXene composite for heavy metal Cr (VI) removal from industrial wastewater.

Asif, Umair Ali / Mahmood, Khalid / Naqvi, Salman Raza / Mehran, Muhammad Taqi / Noor, Tayyaba

Chemosphere

2023  Band 326, Seite(n) 138448

Abstract: The substantial quantity of Cr(VI) contaminants in the aqueous atmosphere is a major environmental fear that cannot be overlooked. For the first time, MXene and chitosan-coated polyurethane foam have been employed for wastewater treatment, including ... ...

Abstract The substantial quantity of Cr(VI) contaminants in the aqueous atmosphere is a major environmental fear that cannot be overlooked. For the first time, MXene and chitosan-coated polyurethane foam have been employed for wastewater treatment, including heavy metal ions (Cr (VI)) through a fixed-bed column study. It is also the most inexpensive, lightweight, and globally friendly material tested. The Mxene and chitosan-coated polyurethane foam hybrid materials were thoroughly investigated using FTIR (Fourier transform infrared), SEM (scanning electron microscope), XPS (X-ray photoelectron spectroscopy) and XRD (X-ray diffraction). The presence of the rough surface and the pore creation in the Mxene- MX
Mesh-Begriff(e) Wastewater ; Chitosan/chemistry ; Water Pollutants, Chemical/analysis ; Chromium/chemistry ; Water/chemistry ; Ions ; Adsorption ; Hydrogen-Ion Concentration ; Kinetics ; Spectroscopy, Fourier Transform Infrared
Chemische Substanzen chromium hexavalent ion (18540-29-9) ; polyurethane foam (9009-54-5) ; Wastewater ; Chitosan (9012-76-4) ; MXene ; Water Pollutants, Chemical ; Chromium (0R0008Q3JB) ; Water (059QF0KO0R) ; Ions
Sprache Englisch
Erscheinungsdatum 2023-03-20
Erscheinungsland England
Dokumenttyp Journal Article
ZDB-ID 120089-6
ISSN 1879-1298 ; 0045-6535 ; 0366-7111
ISSN (online) 1879-1298
ISSN 0045-6535 ; 0366-7111
DOI 10.1016/j.chemosphere.2023.138448
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