Abstrakt
The rise of micropollutants presents a significant threat to both the environment and human well-being, requiring effective strategies for their mitigation. Chitin serves as the precursor for chitosan, composed of two monomers featuring acetamido and amino groups. Chitosan possesses several noteworthy attributes, including its ability to bind water and fat, humidity content, solubility, consistent molecular weight, and various degrees of deacetylation, all of which facilitate surface functionalization. To enhance quality and effectiveness, chitosan can be combined with other adsorbent and/or functional nanomaterials to produce chitosan-based nanocomposites with distinct functionalities for various applications. These nanocomposites offer unique advantages in combating environmental issues. Examples of such nanocomposites include chitosan-grafted carbon nanoonions, polymer–chitosan blends, chitosan–clay mineral composites, chitosan–graphene oxide nanocomposites, magnetic chitosan, chitosan-based foams and sponges, and chitosan/activated carbon composites. Each of these nanohybrid materials plays a crucial role in selectively removing specific types of environmental contaminants. This chapter provides a recent perspective on innovative chitosan-based nanohybrids designed for the elimination of impurities from the environment. These nanohybrids exhibit diverse functions, including adsorption of contaminants, humus removal, extraction of heavy metals and metal ions, and reduction of inanimate impurities such as nitrate, borate, and phosphate. The adsorption kinetics of these chitosan-based nanocomposites have also been thoroughly reviewed, offering valuable insights for further research. Additionally, a comparative analysis of different chitosan-supported composites is conducted to provide potential methodologies for enhancing efficacy and fostering the development of novel compounds for environmental remediation.
Cytowania
-
0
CrossRef
-
0
Web of Science
-
0
Scopus
Autorzy (8)
Cytuj jako
Pełna treść
pełna treść publikacji nie jest dostępna w portalu
Słowa kluczowe
Informacje szczegółowe
- Kategoria:
- Publikacja monograficzna
- Typ:
- rozdział, artykuł w książce - dziele zbiorowym /podręczniku w języku o zasięgu międzynarodowym
- Język:
- angielski
- Rok wydania:
- 2024
- Opis bibliograficzny:
- Mumtaz M., Hussain N., Salam S., Azam Husnain H. M., Łukasik N., Kim T. H., Sousa dos Santos J. C., Ejbye Schmidt J.: Chitosan-based nanomaterials for removal of water pollutants// Chitosan-Based Hybrid Nanomaterials/ : , , s.291-318
- DOI:
- Cyfrowy identyfikator dokumentu elektronicznego (otwiera się w nowej karcie) 10.1016/b978-0-443-21891-0.00016-0
- Źródła finansowania:
-
- Publikacja bezkosztowa
- Weryfikacja:
- Politechnika Gdańska
wyświetlono 74 razy
Publikacje, które mogą cię zainteresować
Effective assessment of biopolymer-based multifunctional sorbents for the remediation of environmentally hazardous contaminants from aqueous solutions
- S. Nawaz,
- A. Tabassum,
- S. Muslim
- + 6 autorów
A review on hydrophobic electrospun nanofibers-based materials and membranes for water treatment: Challenges, outlook, and stability
- F. Janjhi,
- I. Chandio,
- D. Janwery
- + 2 autorów
Polysaccharide nanocomposites in wastewater treatment: A review
- H. Al-Hazmi,
- J. Łuczak,
- S. Habibzadeh
- + 8 autorów
Biomass-Derived Nitrogen Functionalized Carbon Nanodots and Their Anti-Biofouling Properties
- M. Rybarczyk,
- E. Gontarek-Castro,
- K. Ollik
- + 1 autorów