Atjaunināt sīkdatņu piekrišanu

Nanomaterials for Water Treatment and Remediation [Mīkstie vāki]

Edited by (Bilaspur, India), Edited by (Ardabil, Iran), Edited by (Jaypee University of Information Technology, India), Edited by (Kolkata, India)
  • Formāts: Paperback / softback, 469 pages, height x width: 234x156 mm, weight: 740 g, 17 Tables, black and white; 132 Line drawings, black and white; 38 Halftones, black and white; 170 Illustrations, black and white
  • Sērija : Emerging Materials and Technologies
  • Izdošanas datums: 07-Oct-2024
  • Izdevniecība: CRC Press
  • ISBN-10: 0367633094
  • ISBN-13: 9780367633097
Citas grāmatas par šo tēmu:
  • Mīkstie vāki
  • Cena: 70,31 €
  • Grāmatu piegādes laiks ir 3-4 nedēļas, ja grāmata ir uz vietas izdevniecības noliktavā. Ja izdevējam nepieciešams publicēt jaunu tirāžu, grāmatas piegāde var aizkavēties.
  • Daudzums:
  • Ielikt grozā
  • Piegādes laiks - 4-6 nedēļas
  • Pievienot vēlmju sarakstam
  • Formāts: Paperback / softback, 469 pages, height x width: 234x156 mm, weight: 740 g, 17 Tables, black and white; 132 Line drawings, black and white; 38 Halftones, black and white; 170 Illustrations, black and white
  • Sērija : Emerging Materials and Technologies
  • Izdošanas datums: 07-Oct-2024
  • Izdevniecība: CRC Press
  • ISBN-10: 0367633094
  • ISBN-13: 9780367633097
Citas grāmatas par šo tēmu:
This book explores recent developments in the use of advanced nanomaterials (ANMs) for water treatment and remediation. In-depth reaction mechanisms in water treatment technologies including adsorption, catalysis, and membrane filtration for water purification using ANMs are discussed in detail.

Offering a comprehensive view of water-treatment technologies, Nanomaterials for Water Treatment and Remediation explores recent developments in the use of advanced nanomaterials (ANMs) for water treatment and remediation. In-depth reaction mechanisms in water-treatment technologies, including adsorption, catalysis, and membrane filtration for water purification using ANMs, are discussed in detail. The book includes an investigation of the fabrication processes of nanostructured materials and the fundamental aspects of surfaces at the nanoscale. The book also covers the removal of water-borne pathogens and microbes through a photochemical approach.

FEATURES

  • Explains various chemical treatments for the removal and separation of hazardous dyes, organic pollutants, pharmaceuticals, and heavy metals from aqueous solutions, including adsorption, advanced oxidation process, and photocatalysis
  • Discusses the rational design of nanoporous materials with a tunable pore structure and fabrication of nanomaterials by surface chemistry engineering
  • Covers the role of nanomaterials-assisted oxidation and reduction processes, design of nano-assisted membrane-based separation, and multifunctional nanomaterials and nanodevices for water treatment
  • Provides an understanding of the structure–activity relationship and stability of ANMs under critical experimental conditions
  • Identifies potential challenges in the application of multifunctional ANMs for future research

Nanomaterials for Water Treatment and Remediation

is aimed at researchers and industry professionals in chemical, materials, and environmental engineering as well as related fields interested in the application of advanced materials to water treatment and remediation.

1. Advancement of Nanomaterials for Water Treatment
2. Enhancement in
Degradation of Antibiotics Using Photocatalytic Semiconductors under Visible
Light Irradiation: A Review
3. Graphitic Carbon Nitride-Based Nanomaterials
as Photocatalysts for Organic Pollutant Degradation
4. 2D Materials for
Wastewater Treatments
5. TiO2-Based Nanomaterial for Pollutant Removal
6.
Nanomaterials for the Removal of Heavy Metals from Water
7. Photoactive
Polymer for Wastewater Treatment
8. Plasmonic Nanomaterials for Remediation
of Water and Wastewater
9. Magnetic Nanomaterials for Wastewater Remediation
10. Nanofiber Membranes for Wastewater Treatments
11. Carbon Nanomaterials
for Removal of Pharmaceuticals from Wastewater
12. MetalOrganic Frameworks
and Their Derived Materials in Water Purification
13. Photocatalytic
Mechanism in Low-Dimensional Chalcogenide Nanomaterials: An Exciton Dynamics
Insight
14. Emerging Semiconductor Photocatalysts for Antibiotic Removal from
Water/Wastewater