Nanotechnology for Environmental Remediation: Materials and Applications

Нанотехнологии для экологической рекультивации: материалы и применения
Frank Alexis, Fernanda D. Guerra, Mohamed F. Attia, Daniel C. Whitehead, Daniel C. Whitehead
2018-07-18

adsorptioncarbon-based nanomaterialschlorinated organic compoundsenvironmental remediationfiltrationhalogenated herbicidesheavy metalsinorganic nanomaterialsnanotechnology-based materialsorganophosphorus compoundsphotocatalysispolymeric-based nanomaterialsvolatile organic compounds
Environmental remediation relies mainly on using various technologies (e.g., adsorption, absorption, chemical reactions, photocatalysis, and filtration) for the removal of contaminants from different environmental media (e.g., soil, water, and air). The enhanced properties and effectiveness of nanotechnology-based materials makes them particularly suitable for such processes given that they have a high surface area-to-volume ratio, which often results in higher reactivity. This review provides an overview of three main categories of nanomaterials (inorganic, carbon-based, and polymeric-based materials) used for environmental remediation. The use of these nanomaterials for the remediation of different environmental contaminants-such as heavy metals, dyes, chlorinated organic compounds, organophosphorus compounds, volatile organic compounds, and halogenated herbicides-is reviewed. Various recent examples are extensively highlighted focusing on the materials and their applications.
1
Multiple remediation techniques (adsorption, absorption, chemical reactions, photocatalysis, filtration) benefit from incorporation of nanomaterials, improving effectiveness across soil, water, and air media.
2
Nanomaterials are applied to remove a wide range of contaminants including heavy metals, dyes, chlorinated organics, organophosphorus compounds, volatile organic compounds, and halogenated herbicides.
3
Nanotechnology-based materials enhance environmental remediation due to high surface area-to-volume ratio leading to higher reactivity.
4
The paper highlights recent examples that focus on specific nanomaterials and their applications for contaminant removal, emphasizing material-specific use cases.
5
The review categorizes remediation nanomaterials into three main types: inorganic, carbon-based, and polymeric-based materials.

Nanomaterials used for environmental remediation (inorganic, carbon-based, and polymeric nanomaterials)

Their effectiveness and applications in removal of environmental contaminants (heavy metals, dyes, chlorinated organics, organophosphorus compounds, VOCs, halogenated herbicides) via processes such as adsorption, absorption, chemical reactions, photocatalysis, and filtration

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2018-07-18
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Authors
Frank Alexis
Fernanda D. Guerra
Mohamed F. Attia
Daniel C. Whitehead
Daniel C. Whitehead
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