Nanohybrid and Nanoporous Materials for Aquatic Pollution Control (e-bog) af -
Wang, Jiajia (redaktør)

Nanohybrid and Nanoporous Materials for Aquatic Pollution Control e-bog

2190,77 DKK (inkl. moms 2738,46 DKK)
Nanohybrid and Nanoporous Materials for Aqueous Environmental Pollution Control gives a comprehensive treatment of fabrication methods and their application in environmental remediation, including adsorption, catalysis and signal transfer in pollutant detection. The design, fabrication and application of nanohybrid and nanoporous materials for environmental pollution control are described in de...
E-bog 2190,77 DKK
Forfattere Wang, Jiajia (redaktør)
Forlag Elsevier
Udgivet 12 oktober 2018
Længde 322 sider
Genrer Materials science
Sprog English
Format epub
Beskyttelse LCP
ISBN 9780128141557
Nanohybrid and Nanoporous Materials for Aqueous Environmental Pollution Control gives a comprehensive treatment of fabrication methods and their application in environmental remediation, including adsorption, catalysis and signal transfer in pollutant detection. The design, fabrication and application of nanohybrid and nanoporous materials for environmental pollution control are described in detail, along with discussions on their synthesis, characterization, and applications in different aspects of pollutant treatment. Chapters introduce the design and synthesis of magnetic nanohybrid materials, advanced oxide process-photocatalytic degradation of environmental pollutants based on nanomaterials, and nanohybrids of iron based materials for reduction and oxidation of aqueous recalcitrant pollutant. Finally, challenges and suggestions in the application of nanomaterials for environmental pollution control are discussed, as is an analysis of the future perspective of nanomaterials for environmental application. Presents the most up-to-date developments in this rapidly progressing field Provides suggestions to address challenges and solve current problems related to the application of nanoporous materials Discusses future trends and perspectives in the area of nanohybrid and nanoporous materials