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Highly efficient removal of Sb(V) from water by franklinite-containing nano-FeZn composites. | LitMetric

Highly efficient removal of Sb(V) from water by franklinite-containing nano-FeZn composites.

Sci Rep

Guangdong Dinghu Mountain Spring Company Limited, Zhaoqing City, 526070, Guangdong Province, People's Republic of China.

Published: August 2021

AI Article Synopsis

  • - The study focuses on developing a new photocatalyst (rGO/NZV-FeZn) to effectively remove toxic pentavalent antimony (Sb(V)) from water using a hydrothermal method followed by ultrasonication.
  • - Among the tested materials, NZV-FeZn showed the highest adsorption capacity with a removal performance of 543.9 mg/g, achieving a remarkable 99.38% efficiency in practical tests.
  • - The rGO/NZV-FeZn photocatalyst is effective through mechanisms like adsorption-photocatalytic reduction and is highlighted for its cost-effectiveness and potential scalable application in wastewater treatment.

Article Abstract

The existence of toxic and carcinogenic pentavalent antimony in water is a great safety problem. In order to remove antimony(V) from water, the purpose of this study was to prepare a novel graphene nano iron zinc (rGO/NZV-FeZn) photocatalyst via hydrothermal method followed by ultrasonication. Herein, weakly magnetic nano-Fe-Zn materials (NZV-FeZn, GAC/NZV-FeZn, and rGO/NZV-FeZn) capable of rapid and efficient Sb(V) adsorption from water were prepared and characterised. In particular, rGO/NZV-FeZn was shown to comprise franklinite, Fe, and graphite. Adsorption data were fitted by a quasi-second-order kinetic equation and Langmuir model, revealing that among these materials, NZV-FeZn exhibited the best Sb removal performance (543.9 mg g, R = 0.951). In a practical decontamination test, Sb removal efficiency of 99.38% was obtained for a reaction column filled with 3.5 g of rGO/NZV-FeZn. Column regenerability was tested at an initial concentration of 0.8111 mg L, and the treated water obtained after five consecutive runs complied with the GB5749-2006 requirement for Sb. rGO/NZV-FeZn was suggested to remove Sb(V) through adsorption-photocatalytic reduction and flocculation sedimentation mechanisms and, in view of its high cost performance, stability, and upscalable synthesis, was concluded to hold great promise for source water and wastewater treatment.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8384885PMC
http://dx.doi.org/10.1038/s41598-021-95520-7DOI Listing

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