Engineered Nanomaterials for Sustainable Agricultural Production, Soil Improvement and Stress Management

Paperback Engels 2022 9780323919333
Verwachte levertijd ongeveer 9 werkdagen

Samenvatting

Engineered Nanomaterials for Sustainable Agricultural Production, Soil Improvement and Stress Management highlights the latest advances in applying this important technology within agriculture sectors for sustainable growth, production and protection. The book explores various smart engineered nanomaterials which are now being used as an important tool for improving growth and productivity of crops facing abiotic stresses, improving the health of the soil in which those crops are growing, and addressing stresses once the plant begins to produce food yield. The book includes insights into the use of nanoparticles as bactericides, fungicides and nanofertilizers.

In addition, the book includes an international representation of authors who have crafted chapters with clarity, reviewing up-to-date literature with lucid illustrations. It will be an important resource for researchers, nanobiotechnologists, agriculturists and horticulturists who need a comprehensive reference guide.

Specificaties

ISBN13:9780323919333
Taal:Engels
Bindwijze:Paperback

Lezersrecensies

Wees de eerste die een lezersrecensie schrijft!

Inhoudsopgave

<p>1. Emerging role of nanoparticles in sustainable agricultural crop production and protection: An overview<br>2. Emerging role of gold nanoparticles for healthier crop plants growth and enhanced yield<br>3. Emerging role of silver nanoparticles for healthier crop plants growth and enhanced yield<br>4. Physiological, biochemical, and molecular performance of crop plants exposed to cerium oxide nanoparticles<br>5. Physiological, biochemical, and molecular performance of crop plants exposed to zinc oxide nanoparticles<br>6. Physiological, biochemical, and molecular performance of crop plants exposed to copper oxide nanoparticles<br>7. Physiological, biochemical, and molecular performance of crop plants exposed to titanium oxide nanoparticles<br>8. Physiological, biochemical, and molecular performance of crop plants exposed to iron oxide nanoparticles<br>9. Physiological, biochemical, and molecular performance of crop plants exposed to aluminium oxide nanoparticles<br>10. Effect of chitosan nanoparticles on crop plants growth and physiology<br>11. Assessment of carbon and fullerene nanomaterials for sustainable crop plants growth and production<br>12. Role of nanocomposite for sustainable crop plants growth and production<br>13. Emerging concept of nanofertilizers for sustainable crop plants growth and production<br>14. Engineered nanomaterials in crop plants drought stress management<br>15. Engineered nanomaterials in crop plants salinity stress management<br>16. Engineered nanomaterials in crop plants temperature/heat stress management: A new-fangled approach<br>17. Engineered nanomaterials in crop plants nutrients stress management<br>18. Emerging concept of engineered nanomaterials in soil improvement for higher crop plants growth and production<br>19. Emerging concept of smart engineered nanomaterials for plant disease diagnosis and management<br>20. Nanosensors: A tool from the vault of science for crop plants growth, development, production and protection</p>

Managementboek Top 100

Rubrieken

    Personen

      Trefwoorden

        Engineered Nanomaterials for Sustainable Agricultural Production, Soil Improvement and Stress Management