Nano-engineered Materials for Textile Waste Remediation
- Indbinding:
- Paperback
- Sideantal:
- 236
- Udgivet:
- 4. januar 2024
- Udgave:
- 24001
- Størrelse:
- 155x13x235 mm.
- Vægt:
- 365 g.
- 8-11 hverdage.
- 7. december 2024
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- 1 valgfrit digitalt ugeblad
- 20 timers lytning og læsning
- Adgang til 70.000+ titler
- Ingen binding
Abonnementet koster 75 kr./md.
Ingen binding og kan opsiges når som helst.
Beskrivelse af Nano-engineered Materials for Textile Waste Remediation
This book presents a complete state of the art for different types of nanomaterial, their environmental fate, and their use in textile waste remediation. Nano-engineered materials including nanoparticles, nanofibers, nanotubes have been used extensively for a variety of applications. Environmental concerns have been noted mainly due to the discharge of textile waste. Nanotechnology is fast growing on research and bringing sustainable solution in minimizing the waste. This also minimizes the risk of exposure and health hazards. With the development of industry, environmental pollution and energy shortage have raised awareness of a potential global crisis. So, it is urgent to develop a simple and effective method to address these current issues. Nano-engineered materials can be better solution in finding solution of environmental sustainability more specific to the textile waste remediation.
Nano-engineered materials have emerged as pioneering photocatalysts and account for most of the current research in this area. This can provide large surface areas, diverse morphologies, abundant surface states, and easy device modeling, all of which are properties beneficial to photodegradation. Furthermore, the stability and cost of nano-engineered materials are critical factors. Therefore, it is a challenge of great importance to identify and design nano-engineered materials that are efficient, stable, and abundant for the remediation of textile waste.¿
Nano-engineered materials have emerged as pioneering photocatalysts and account for most of the current research in this area. This can provide large surface areas, diverse morphologies, abundant surface states, and easy device modeling, all of which are properties beneficial to photodegradation. Furthermore, the stability and cost of nano-engineered materials are critical factors. Therefore, it is a challenge of great importance to identify and design nano-engineered materials that are efficient, stable, and abundant for the remediation of textile waste.¿
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Bogen Nano-engineered Materials for Textile Waste Remediation findes i følgende kategorier:
- Business og læring > Videnskab
- Matematik og naturvidenskab > Naturvidenskab: generelle emner > Nanovidenskaber
- Geofag, geografi og miljøvidenskab > Miljø > Affaldshåndtering
- Geofag, geografi og miljøvidenskab > Miljø > Bæredygtighed
- Teknologi, ingeniørvidenskab og landbrug > Teknologi: generelle emner > Nanoteknologi
- Teknologi, ingeniørvidenskab og landbrug > Maskinteknik og materialer > Materialelære
- Teknologi, ingeniørvidenskab og landbrug > Miljøvidenskab, miljøteknik og miljøteknologi > Teknisk hygiejne > Affaldshåndtering og affaldsdeponering
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