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Titlebook: Nanomaterials and Nanocomposites for Environmental Remediation; Swatantra P. Singh,Karthik Rathinam,Avinash Kumar Book 2021 The Editor(s)

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Shiju AbrahamAnspruch auf Vollständigkeit erhoben. Vielmehr werden ausgewählte Stolpersteine nach gesundem Menschenverstand erklärt und mit Beispielen belegt. Sollte jemand Freude und Gefallen an der deutschen Sprache finden, empfehle ich weiterführende Literatur zur deutschen Grammatik. Wenn Sie Interesse an de
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Carbon Nanomaterials: A Prominent Emerging Materials Towards Environmental Pollution Study and Contming future. A major portion of the solution can be achieved by focusing the aim on the recyclability of the natural resources. Whether it is a concern to water pollution leading to water scarcity, or air pollution leading to fresh and breathable air scarcity, the data are not significantly acceptab
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Titanium Oxide Composites with Graphene and Laser-Induced Graphene for the Environmental Applicatios carbon-based nanomaterials, graphene-based nanocomposite materials are gaining the attention of researchers globally as novel materials for biomedical, energy, electronic, and environmental applications. Graphene has unique physico-chemical properties, especially its exceptionally high-specific su
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Application of g-C3N4-based Materials for the Efficient Removal and Degradation of Pollutants in Wast threats to the environment and human health. Pollutants in water are not desirable even if they have less toxicity, therefore, they must be either removed or degraded. Despite several materials reported, polymeric materials have been widely suggested and used nowadays in water treatment applicati
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Application of Metal and Metal Oxide Nanoparticles as Potential Antibacterial Agents, cell wall, protein synthesis and DNA replication, whereas microbes resist it through genetic basis or mechanistic basis of environmental resistance. The nanoparticles have shown a great potential as an alternative to antibiotics for treatment of microbial infections. Nanoparticles cause microbial i
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Perovskite BiFeO3 Nanostructure Photocatalysts for Degradation of Organic Pollutants,t potential for efficient detection and removal of pollutants due to their vast array of useful properties. Recently, the magnetic property and catalytic activity of Bi-based oxide nanostructures have been exploited for environmental applications such as catalytic oxidation of recalcitrant pollutant
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Photocatalysis for the Removal of Environmental Contaminants,ntaminants are recalcitrant in nature, because of which conventional treatment technologies are inefficient in their removal. Photocatalytic oxidation processes which produce highly reactive oxygen species are capable of complete mineralization of these organic compounds. The development of highly e
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Technological Advancement in Photocatalytic Degradation of Dyes Using Metal-Doped Biopolymeric Compeatment facilities led to the discharge of effluents into water bodies, thereby causing a serious threat to the environment. The presence of such pollutants in the water bodies deteriorates the water quality and makes it unfit for use. From an environmental perspective, it is essential to develop ne
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