Udkommer d. 02.03.2026
Green and Sustainable Synthesis of Iron Oxide-Based Nanomaterials for Energy and Environmental Applications
- Format
- Bog, paperback
- Engelsk
- Indgår i serie
Normalpris
Medlemspris
- Du sparer kr. 65,00
- Fri fragt
Beskrivelse
Green and Sustainable Synthesis of Iron Oxide-Based Nanomaterials for Energy and Environmental Applications explores various synthesis methods of iron and iron oxide nanoparticles, with an emphasis on green synthesis – a sustainable and eco-friendly method. The book investigates a range of alternative routes to the synthesis of iron-based nanomaterials, such as using microorganisms (fungi, bacteria, actinomycetes), algae, green plants, and various biocompatible green reagents such as biopolymers, cellulose, and biomass. Furthermore, the effects of various parameters used in the green synthesis approach are examined in order to provide a clear image of the physicochemical features of the nanomaterials created.
Detaljer
- SprogEngelsk
- Sidetal700
- Udgivelsesdato02-03-2026
- ISBN139780443218453
- Forlag Elsevier - Health Sciences Division
- FormatPaperback
Størrelse og vægt
10 cm
Anmeldelser
Vær den første!
Findes i disse kategorier...
- Fagbøger
- Andre fagbøger
- Teknologi, ingeniørvidenskab og landbrug
- Maskinteknik og materialer
- Materialelære
- Green and Sustainable Synthesis of Iron Oxide-Based Nanomaterials for Energy and Environmental Applications
- Fagbøger
- Andre fagbøger
- Teknologi, ingeniørvidenskab og landbrug
- Elektronik og kommunikationsteknik
- Elektroteknik
- Green and Sustainable Synthesis of Iron Oxide-Based Nanomaterials for Energy and Environmental Applications
- Fagbøger
- Andre fagbøger
- Geofag, geografi og miljøvidenskab
- Miljø
- Affaldshåndtering
- Green and Sustainable Synthesis of Iron Oxide-Based Nanomaterials for Energy and Environmental Applications
- Fagbøger
- Andre fagbøger
- Teknologi, ingeniørvidenskab og landbrug
- Miljøvidenskab, miljøteknik og miljøteknologi
- Teknisk hygiejne
- Affaldshåndtering og affaldsdeponering
- Green and Sustainable Synthesis of Iron Oxide-Based Nanomaterials for Energy and Environmental Applications