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Adsorptive removal of heavy metals from wastewater using emerging nanostructured materials: A state-of-the-art review
•Progress in developing/applying various nanostructured adsorbents has been reviewed.•LDHs, graphene, CNTs, MXenes, MOFs, and ZIFs are very promising HMs adsorbents.•Latest advancements in adsorptive removal of HMs from wastewater have been analyzed.•Adsorption isotherm, kinetics, thermodynamics, me...
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Published in: | Separation and purification technology 2024-09, Vol.343, p.127018, Article 127018 |
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Main Authors: | , |
Format: | Article |
Language: | English |
Subjects: | |
Citations: | Items that this one cites Items that cite this one |
Online Access: | Get full text |
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Summary: | •Progress in developing/applying various nanostructured adsorbents has been reviewed.•LDHs, graphene, CNTs, MXenes, MOFs, and ZIFs are very promising HMs adsorbents.•Latest advancements in adsorptive removal of HMs from wastewater have been analyzed.•Adsorption isotherm, kinetics, thermodynamics, mechanism, etc., have been discussed.•Challenges/limitations are highlighted; future research directions are identified.
Heavy metals (HMs) are among the most hazardous water pollutants due to their toxic (when ionized in water) and non-biodegradable nature. Although there are several methods that can be used to remove HMs from contaminated water samples, adsorption is one of the most attractive techniques for water decontamination due to its several attractive attributes. However, the efficacy of the adsorptive removal of HMs from wastewater greatly depends on the characteristics of the utilized adsorbents. Recently, nanostructured adsorbents such as layered double/triple hydroxides (LDHs/LTHs), carbon nanotubes (CNTs), graphene-based materials, MXenes, metal organic frameworks (MOFs), and zeolitic imidazolate frameworks (ZIFs) have emerged as attractive tools for the removal of HMs from wastewater. Although there are a few review articles on each of these nanomaterials, comprehensive reviews documenting the applications of all these nanomaterials in one place are still greatly lacking. Additionally, adsorptive removal of HMs is a rapidly evolving field, requiring up-to-date comprehensive reviews in order to analyse, assess, and summarize the scattered information in recently published research articles, making it convenient for researchers and professionals to easily follow the progress in the field. Therefore, the main objective of this article is to comprehensively review recent studies on the adsorptive removal of HMs from contaminated water samples using nanostructured adsorbents (i.e., LDHs/LTHs, CNTs, graphene, MXenes, MOFs, ZIFs, and nanocomposites containing any of these nanomaterials). Besides their synthesis approaches, the adsorption performance of these nanomaterials towards HMs are extensively reviewed. Adsorption kinetics, isotherm, the effects of several adsorption parameters, adsorption thermodynamics, and reusability/recyclability of these nanostructured adsorbents are thoroughly and critically reviewed. Obstacles, challenges, limitations, and remaining knowledge gaps are identified, and future works to address them have been highlighted. Hence, |
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ISSN: | 1383-5866 1873-3794 |
DOI: | 10.1016/j.seppur.2024.127018 |