Handbook of Nanomaterials for Wastewater Treatment: Fundamentals and Scale up Issues Bharat A. Bhanvase- Ebook Instant Download/Delivery ISBN(s): 9780128214961,0128214961,9780128214992, 0128214996
Product details:
- ISBN 10:0128214996
- ISBN 13:9780128214992
- Author: Bharat A. Bhanvase , Shirish Sonawane , Vijay B. Pawade , Aniruddha B. Pandit
Handbook of Nanomaterials for Wastewater Treatment: Fundamentals and Scale up Issues provides coverage of the nanomaterials used for wastewater treatment, covering photocatalytic nanocomposite materials, nanomaterials used as adsorbents, water remediation processes, and their current status and challenges. The book explores the major applications of nanomaterials for effective catalysis and adsorption, also providing in-depth information on the properties and application of new advanced nanomaterials for wastewater treatment processes. This is an important reference source for researchers who need to solve basic and advanced problems relating to the use of nanomaterials for the development of wastewater treatment processes and technologies.
As nanotechnology has the potential to substantially improve current water and wastewater treatment processes, the synthesis methods and physiochemical properties of nanomaterials and noble metal nanoparticles make their performance and mechanisms efficient for the treatment of various pollutants.
Table contents:
Chapter 1: Introduction to nanomaterials for wastewater treatment
Chapter 2: Low-dimensional nanomaterials: Syntheses, physicochemical properties, and their role in wastewater treatment
Chapter 3: Potential risk and safety concern of nanomaterials used for wastewater treatment
Chapter 4: Advanced technologies for wastewater treatment: New trends
Chapter 5: Introduction, basic principles, mechanism, and challenges of photocatalysis
Chapter 6: Doped-TiO2 and doped-mixed metal oxide-based nanocomposite for photocatalysis
Chapter 7: New graphene-based nanocomposite for photocatalysis
Chapter 8: Luminescence nanomaterials for photocatalysis
Chapter 9: Magnetic nanomaterials-based photocatalyst for wastewater treatment
Chapter 10: Nanomaterials for water splitting and hydrogen generation
Chapter 11: Nanomaterials for treatment of air pollutants
Chapter 12: Nanomaterials for adsorption of pollutants and heavy metals: Introduction, mechanism, and challenges
Chapter 13: New graphene nanocomposites-based adsorbents
Chapter 14: Role of zeolite adsorbent in water treatment
Chapter 15: Metal-organic framework nanocomposite based adsorbents
Chapter 16: Advanced nanocomposite ion exchange materials for water purification
Chapter 17: Nanomaterials for membrane synthesis: Introduction, mechanism, and challenges for wastewater treatment
Chapter 18: Carbon-based nanocomposite membranes for water purification
Chapter 19: Nanocomposite membranes for heavy metal removal
Chapter 20: Polymer nanocomposite membranes for wastewater treatment
Chapter 21: Responsive membranes for wastewater treatment
Chapter 22: Nanomaterial-based photocatalytic membrane for organic pollutants removal
Chapter 23: Introduction of water remediation processes
Chapter 24: Nanocomposite photocatalysts-based wastewater treatment
Chapter 25: Nanomaterial-based advanced oxidation processes for degradation of waste pollutants
Chapter 26: Electro-photocatalytic degradation processes for dye/colored wastewater treatment
Chapter 27: Fenton with zero-valent iron nanoparticles (nZVI) processes: Role of nanomaterials
Chapter 28: Nanocomposite adsorbent-based wastewater treatment processes: Special emphasis on surface-engineered iron oxide nanohybrids
Chapter 29: Preparation of novel adsorbent (marble hydroxyapatite) from waste marble slurry for ground water treatment to remove fluoride
Chapter 30: Nanocomposite/nanoparticle in membrane-based separation for water remediation: Case study
Chapter 31: The process for the removal of micropollutants using nanomaterials
Chapter 32: Antimicrobial activities of nanomaterials in wastewater treatment: A case study of graphene-based nanomaterials
Chapter 33: Potential of nano biosurfactants as an ecofriendly green technology for bioremediation
Chapter 34: Potential risk and safety concerns of industrial nanomaterials in environmental management
Chapter 35: A novel SnO2/polypyrrole/SnO2 nanocomposite modified anode with improved performance in benthic microbial fuel cell
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