A Review on Heavy Metal Ions and Containing Dyes Removal Through Graphene Oxide‐Based Adsorption Strategies for Textile Wastewater Treatment

Обзор удаления ионов тяжёлых металлов и металлсодержащих красителей с помощью адсорбционных стратегий на основе оксида графена для очистки текстильных сточных вод
Tapas K. Mallick, Senthilarasu Sundaram, Anurag Roy, Sasireka Velusamy
2021-02-04

Cr(VI), Pb(II), Cd(II), and Zn(II)graphene oxide adsorptionheavy metal ion removalmetal-containing dyestextile wastewater treatment
Textile wastewater heavy metal pollution has become a severe environmental problem worldwide. Metal ion inclusion in a dye molecule exhibits a bathochromic shift producing deeper but duller shades, which provides excellent colouration. The ejection of a massive volume of wastewater containing heavy metal ions such as Cr (VI), Pb (II), Cd (II) and Zn (II) and metal-containing dyes are an unavoidable consequence because the textile industry consumes large quantities of water and all these chemicals cannot be combined entirely with fibres during the dyeing process. These high concentrations of chemicals in effluents interfere with the natural water resources, cause severe toxicological implications on the environment with a dramatic impact on human health. This article reviewed the various metal-containing dye types and their heavy metal ions pollution from entryway to the wastewater, which then briefly explored the effects on human health and the environment. Graphene-based absorbers, specially graphene oxide (GO) benefits from an ordered structured, high specific surface area, and flexible surface functionalization options, which are indispensable to realize a high performance of heavy metal ion removal. These exceptional adsorption properties of graphene-based materials support a position of ubiquity in our everyday lives. The collective representation of the textile wastewater's effective remediation methods is discussed and focused on the GO-based adsorption methods. Understanding the critical impact regarding the GO-based materials established adsorption portfolio for heavy metal ions removal are also discussed. Various heavy-metal ions and their pollutant effect, ways to remove such heavy metal ions and role of graphene-based adsorbent including their demand, perspective, limitation, and relative scopes are discussed elaborately in the review.
1
Graphene oxide is highlighted as a promising adsorbent because of its ordered structure, high specific surface area, and flexible surface functionalization.
2
Metal-containing dyes and heavy-metal effluents pose substantial risks to natural water resources, environmental quality, and human health.
3
Textile dyeing generates wastewater containing heavy metals such as Cr(VI), Pb(II), Cd(II), and Zn(II), because chemicals are not fully incorporated into textile fibers.
4
The review evaluates graphene oxide-based adsorption strategies for removing heavy-metal ions and metal-containing dyes from textile wastewater.
5
The review identifies the prospects, demands, limitations, and application scope of graphene-based adsorbents for textile wastewater remediation.

Graphene oxide-based adsorption systems for removing heavy metal ions and metal-containing dyes from textile wastewater

The adsorption-based removal performance, mechanisms, benefits, limitations, and prospects of graphene oxide materials for textile-wastewater pollutants, particularly Cr(VI), Pb(II), Cd(II), Zn(II), and metal-containing dyes

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2021-02-04
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Tapas K. Mallick
Senthilarasu Sundaram
Anurag Roy
Sasireka Velusamy
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