A comprehensive review on monitoring and purification of water through tunable 2D nanomaterials

Author:

Areche F. O.1ORCID,Mamani C. M. C.2ORCID,Cárdenas J. A. L.3ORCID,Sumarriva-Bustinza L. A.4ORCID,Pastrana P. A. P.1ORCID,Porras-Roque M. S.5ORCID,Huayapa M. A. C.6ORCID,Zea C. Y. H.6ORCID,Rios O. G. V.7ORCID,Montes J. E. S.8ORCID,Paitan-Anticona E. N.9ORCID,Chávez-Sumarriva N. L.10ORCID,Paucarmayta A. A. M.9ORCID,Araujo V. G. S.1ORCID,Paucarmayta M. H. M.11ORCID,Carrasco S. M.12ORCID,Yapias R. J. M.13ORCID,Paricanaza-Ticona D.C.1ORCID

Affiliation:

1. Universidad Nacional de Huancavelica, Peru

2. National University of Jaen, Peru

3. José Faustino Sánchez Carrión National University, Peru

4. National University of Education Enrique Guzmán y Valle, Peru

5. Jorge Basadre Grohmann National University, Peru

6. National University of Juliaca, Peru

7. César Vallejo University, Peru

8. Santiago Antunez de Mayolo National University, Peru

9. National University of Central Peru, Peru

10. Scientific University of the Sur, Peru

11. National Intercultural University, Peru

12. Micaela Bastidas National University of Apurimac, Peru

13. Altoandina National Autonomous University of Tarma, Peru

Abstract

Abstract Instead of typical household trash, the heavy metal complexes, organic chemicals, and other poisons produced by huge enterprises threaten water systems across the world. In order to protect our drinking water from pollution, we must keep a close eye on the situation. Nanotechnology, specifically two-dimensional (2D) nanomaterials, is used in certain wastewater treatment systems. Graphene, g-C3N4, MoS2, and MXene are just a few examples of emerging 2D nanomaterials that exhibit an extraordinary ratio of surface (m3), providing material consumption, time consumption, and treatment technique for cleaning and observing water. In this post, we'll talk about the ways in which 2D nanomaterials may be tuned to perform certain functions, namely how they can be used for water management. The following is a quick overview of nanostructured materials and its possible use in water management: Also discussed in length are the applications of 2D nanomaterials in water purification, including pollutant adsorption, filtration, disinfection, and photocatalysis. Fluorescence sensors, colorimetric, electrochemical, and field-effect transistors are only some of the devices being studied for their potential use in monitoring water quality using 2D nanomaterials. Utilizing 2D content has its benefits and pitfalls when used to water management. New developments in this fast-expanding business will boost water treatment quality and accessibility in response to rising awareness of the need of clean, fresh water among future generations.

Publisher

FapUNIFESP (SciELO)

Subject

General Agricultural and Biological Sciences

Reference110 articles.

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